Quantum Traction Theory Lexicon
Lexicon Data
Machine-readable mirror for the QTT Lexicon: terms, symbols, aliases, origin class, epistemic grade, standard correlate, book pages, concept DOI families, Observatory links, and related terms.
Rows
219
Symbols
25
Generated
2026-07-04
Book
v10.01
JSON Export
[
{
"id": "term-quantum-traction-theory",
"term": "Quantum Traction Theory",
"symbol": "QTT",
"aliases": [],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: foundations/unification program; differs by treating laboratory quantities as access images of a finite address-capacity ledger.",
"summary": "The connected manuscript/corpus framework in which finite address capacity, two-clock access, real-J phase, and bundled existence are treated as one substrate ledger.",
"ontology": "QTT is not a loose collection of claims; it is the book-level attempt to read physical law as finite capacity accounting on completed address events, with every laboratory number treated as an access image of a source object.",
"math": "",
"book_pages": "pp. 1, 118, 1247-1255",
"anchor_note": "Book master record and current synthesis; cite the stable concept DOI.",
"concept_doi_families": [
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
}
],
"reader_links": [
"https://quantumtraction.org/blog-map/"
],
"observatory_links": [],
"related": [
"Artian Geometry",
"A1",
"A6",
"A7",
"Access Law"
],
"external_see_also": []
},
{
"id": "term-artian-geometry",
"term": "Artian Geometry",
"symbol": "",
"aliases": [],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: discrete geometry/lattice regularization; differs because cells are completion-counted capacity objects, not inserted coordinate lattice points.",
"summary": "The geometric substrate language of QTT: rotationally closed finite cells, Artian ruler/tick, address closure, and the book's current replacement for older public substrate terminology.",
"ontology": "Artian Geometry supplies the finite geometry in which QTT's address cells are not naked coordinate cubes but rotationally closed capacity objects with finite closure and access rules.",
"math": "V_pix = (pi/6) ell_A^3; V_SQ = 24 V_pix = 4 pi ell_A^3; Q_Sigma = 8 pi ell_A^2.",
"book_pages": "pp. 56, 193, 280, 304",
"anchor_note": "Book v10.01: A5-X noncircular address-ruler source theorem; Pixellate and Space Quantum definitions.",
"concept_doi_families": [
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
},
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/02/artians-origami/"
],
"observatory_links": [],
"related": [
"Pixellate",
"Space Quantum",
"Artian micro-ruler",
"Q_Sigma"
],
"external_see_also": [
{
"label": "Two Universes: geometry status",
"href": "https://quantumtraction.org/two-universes/#geometry-source-readout"
},
{
"label": "Two Universes: perfect spheres",
"href": "https://quantumtraction.org/two-universes/#geometry-19"
}
]
},
{
"id": "term-artian-s-universe",
"term": "Artian's Universe",
"symbol": "",
"aliases": [
"1+3+1 source ontology",
"Reality Dimension spine",
"Artian's Universe source ontology"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: spacetime ontology; differs because QTT treats laboratory 3+1 spacetime as a readout shadow of a counted 1+3+1 source ontology, not as the deepest arena.",
"summary": "The QTT source ontology: a counted 1+3+1 universe whose laboratory 3+1 equations are readout shadows of completed modular-capacity events.",
"ontology": "In the current strong-coupling theorem this is the explicit arena in which the derivation is written. Artian's Universe is not a smooth 3+1 continuum with a decorative extra label, not a hidden spatial road, not a compact bulk, and not a second realm. The additional 1 is the Reality Dimension spine: a non-translational address ledger around which completed bundles close. The ordinary 3 spatial coordinates and the laboratory clock/time coordinate are access readouts of that counted source object.",
"math": "Artian's Universe = 1_Reality-Dimension-spine + 3_spatial-laboratory-readout + 1_clock/time-readout\n\nE in C_T iff Q_E^bundle = 2pi, E_E t_tilde = hbar, and Delta V_{4,E} = 4pi ell_tilde^4.",
"book_pages": "pp. 235-238, 263-266; strong-coupling theorem source-ontology box, concept DOI 10.5281/zenodo.20625550; Artian time framework source statement, concept DOI 10.5281/zenodo.20761499",
"anchor_note": "Book v10.01: A1 heartbeat, A5-X completed-address reading, A7/A7-U same-universe completion guardrail, and the strong-coupling theorem source-ontology box.",
"concept_doi_families": [
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/03/why-cos-pi-8-is-not-a-speed-limit/"
],
"observatory_links": [],
"related": [
"Human Invented Universe",
"Reality Dimension",
"A1",
"A5-X",
"A7-U",
"Completed address event",
"Q_bundle"
],
"external_see_also": [
{
"label": "Two Universes: ontology map",
"href": "https://quantumtraction.org/two-universes/"
},
{
"label": "Two Universes: top contrasts",
"href": "https://quantumtraction.org/two-universes/#top-contrasts"
},
{
"label": "Human-invented universe field note",
"href": "https://quantumtraction.org/2026/06/18/the-universe-humans-invented-and-forgot-they-did/"
}
]
},
{
"id": "term-human-invented-universe",
"term": "Human Invented Universe",
"symbol": "",
"aliases": [
"Human-invented smooth-continuum universe",
"Smooth-continuum source ontology",
"3+1 differentiable-manifold universe"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "denied source ontology",
"epistemic_grade": "Denied source ontology",
"standard_physics_correlate": "nearest standard frame: smooth-continuum spacetime realism; QTT keeps the mathematics as a laboratory approximation but denies this continuum as the source ontology of physical reality.",
"summary": "QTT's name for the rejected idea that physical reality's deepest arena is only a human-invented smooth 3+1 differentiable continuum.",
"ontology": "QTT denies that the human-invented smooth-continuum universe exists as the source ontology of physical reality. This is not a denial that continuum equations work in laboratories; QTT treats those equations as powerful coarse-grained shadows recovered when many completed address events are read through ordinary space and laboratory time. The denied object is the claim that the continuum itself is the final source arena.",
"math": "Denied as source ontology:\nReality_source != smooth 3+1 differentiable manifold\n\nRecovered as readout shadow:\nmany completed address events -> ordinary spatial readout + laboratory time.",
"book_pages": "strong-coupling theorem source-ontology box, concept DOI 10.5281/zenodo.20625550; QTT source ontology pp. 235-238, 263-266; Artian time framework source/readout statement, concept DOI 10.5281/zenodo.20761499",
"anchor_note": "Strong-coupling theorem source-ontology box: QTT denies the human-invented smooth-continuum universe as source ontology and replaces it with Artian's Universe.",
"concept_doi_families": [
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
},
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Artian's Universe",
"Source/readout split",
"Access window",
"Completed address event",
"A5-X",
"A7-U"
],
"external_see_also": [
{
"label": "Two Universes: ontology map",
"href": "https://quantumtraction.org/two-universes/"
},
{
"label": "Two Universes: top contrasts",
"href": "https://quantumtraction.org/two-universes/#top-contrasts"
},
{
"label": "Human-invented universe field note",
"href": "https://quantumtraction.org/2026/06/18/the-universe-humans-invented-and-forgot-they-did/"
}
]
},
{
"id": "term-a1",
"term": "A1",
"symbol": "",
"aliases": [
"Artian's Universe Heartbeat",
"Two-clock structure"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Axiom",
"standard_physics_correlate": "nearest standard frame: lapse/proper-time kinematics plus phase-space clock choice; differs by making the source clock and laboratory clock ontologically distinct.",
"summary": "Two-clock kinematics: an absolute background clock T and laboratory proper time tau are related by a positive lapse, while address dials carry real-J phase.",
"ontology": "A1 says the source ledger has its own fastest clock, while any laboratory clock is a projection through lapse, motion, and access. It also anchors local causality and the real two-component dial.",
"math": "d tau = N(x) gamma^{-1}(v) dT, 0 < N <= 1; c = ell_tilde / t_tilde.",
"book_pages": "pp. 235-238, 541, 1255",
"anchor_note": "Book v10.01: Axiom A1 section; half-angle discussion around the two-clock projection.",
"concept_doi_families": [
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
},
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"T",
"tau",
"I_clk",
"pi/4",
"J"
],
"external_see_also": []
},
{
"id": "term-a2",
"term": "A2",
"symbol": "",
"aliases": [
"Law of Endurance",
"Blips"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Axiom",
"standard_physics_correlate": "nearest standard frame: gravitational continuity/source equation; differs by reading gravity as endurance-current accounting rather than primitive curvature alone.",
"summary": "Persistence requires a per-mass consumption/renewal ledger whose steady isotropic solution gives inverse-square endurance flux and the Newtonian limit.",
"ontology": "Mass is read as an ongoing sink/renewal demand on space-quantum capacity. Gravity is the continuum shadow of that endurance accounting; the current A2 field paper extends the bridge from Newton-Poisson and proper-time shadows to the full infrared Einstein field equation.",
"math": "dN_SQ^sink/dT = (M / m_tilde)(1 / t_tilde); G_A = ell_tilde^2 c^3 / hbar; G_mu_nu + Lambda_A3 g_mu_nu = (8*pi*G_A/c^4)T_mu_nu^A2.",
"book_pages": "pp. 238-241, 268, 1248; A2 Einstein-field concept DOI 10.5281/zenodo.20763263",
"anchor_note": "Book v10.01: Axiom A2 / Law of Endurance section.",
"concept_doi_families": [
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "Artian A2 Blind Tabletop Gravity Tests: Three No-Retune Source-Access Tests of Endurance Holonomy Beyond Ordinary GR/QM Shadows",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20772326"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
},
{
"title": "A Parameter-Free Einstein–Hilbert Coefficient from a Sink-Current Endurance Ledger",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042843"
},
{
"title": "Newton's Second Law as a Three-Way Capacity-Counting Theorem: A QTT Derivation of Inertia, Gravitation, and Reality-Work from One Substrate Count",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20059779"
}
],
"reader_links": [
"https://quantumtraction.org/2025/11/27/solving-the-three-body-with-law-of-endurance/"
],
"observatory_links": [],
"related": [
"Endurance current",
"G",
"A2 Einstein-field dynamics",
"Finite-address correction map",
"Inertia theorem",
"Space Quantum"
],
"external_see_also": []
},
{
"id": "term-a3",
"term": "A3",
"symbol": "",
"aliases": [
"Law of Creation",
"Blops"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Axiom",
"standard_physics_correlate": "nearest standard frame: cosmological source/vacuum sector; differs by pairing creation accounting with endurance sinks.",
"summary": "The creation/source side of the endurance ledger, including White-Void/Blop events that repair or mint discrete volume in the cosmology/vacuum sector.",
"ontology": "A3 is not an arbitrary dark-energy insert. It is the source-side accounting paired with A2's sink accounting, with cosmic expansion and vacuum-sector terms treated as ledger consequences.",
"math": "V_blop^(b)(T0) ~= 48 pi G M_b T0^2; R_eq = (36 G M_b T0^2)^{1/3}.",
"book_pages": "pp. 212-213, 241-246, 540, 711-715, 1209; Creation Ledger concept DOI 10.5281/zenodo.20633582",
"anchor_note": "Book v10.01: Axiom A3 / Law of Creation section.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Creation Ledger",
"White-Void",
"ABC/WV closure",
"T0_ABC",
"Vacuum capacity"
],
"external_see_also": []
},
{
"id": "term-arrow-of-time",
"term": "Arrow of Time",
"symbol": "",
"aliases": [
"A3/A2 arrow theorem",
"single oriented primitive",
"source-time orientation",
"address-time completion"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: thermodynamic/cosmological arrow and Past Hypothesis discussions; differs by treating the ordinary arrows as readouts of one finite-address ontology with typed ledgers with A2 finite endurance support.",
"summary": "The QTT theorem that ordinary arrows of time, Quantized Now, Time Tilt/Drift, delayed-choice records, twin-clock differences, retarded radiation, gravitational clock slowing, and high-regime finite-boost timing are readouts of one finite-address ontology with typed ledgers, with A2 supplying local time-capacity consumption.",
"ontology": "The arrow is not inserted separately as thermodynamic typicality, cosmological boundary condition, measurement collapse, radiative convention, retrocausal rewrite, block-universe smooth time, or gravitational-clock folklore. A1 orders events and A7 persists completed records; A3 creates source volume; Now is finite membership in a completed reality-address tick; the ABC source clock reaches the lab through a fixed Time Tilt and Creation Drift bridge; A2 requires finite endurance support; proper time is the A2/speed-share clock face; high-regime boosts are finite address ticks; laboratory records read these layers through positive clock/access factors.",
"math": "partial_T n_SQ + div J_end = Gamma_A3 - Gamma_A2, Gamma_A3>=0, Gamma_A2>=0\ndN_addr/dT = Gamma_comp^A3(T) >= 0, sigma_T = +1\nNow_R(T_n)={X in R: a(X)=n}, T_w(X)=T_{a(X)}\ntheta_age=pi/8+pi/48=7pi/48, t0_lab=T0_ABC cos(7pi/48)\nd tau=exp(-E_A2)sqrt(1-v^2/c^2)dT\np_{n+1}=p_n+N_n M_* c\nG_phys^QTT=G_J^+=Theta_w L_J^-1, Pi_phys G_J^- Pi_src=0",
"book_pages": "A2/A3, entropy, Creation Ledger, measurement-record, Quantized Now, delayed-choice, twin-clock, retarded address-operator, proper-time, quantized-Lorentz, and clock-readout anchors; arrow-of-time concept DOI 10.5281/zenodo.20761499",
"anchor_note": "Concept DOI is the stable citation target; the latest concept-family version speaks.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Entropy Production as Anchored Modular Charge: A Parameter-Free QTT Derivation of the Second Law and Its Area-Law, Page-Bound and Transport Consequences",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045306"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Artian Time Framework",
"Time Tilt",
"Time Drift",
"A3",
"A2",
"Completed-address monotone",
"Quantized Now",
"Address-time completion",
"No-past-rewrite boundary",
"Twin address-path theorem",
"A2 time-capacity consumption",
"A2 proper-time metric shadow",
"Quantized Lorentz boost ledger",
"High-regime twin theorem",
"Past Hypothesis",
"Retarded address operator",
"Measurement as access",
"Entropy anchored modular charge"
],
"external_see_also": [
{
"label": "Derivation Atlas: Arrow of Time",
"href": "https://quantumtraction.org/derivation-atlas/#node-ARROW-OF-TIME"
},
{
"label": "Two Universes: time",
"href": "https://quantumtraction.org/two-universes/#time"
}
]
},
{
"id": "term-artian-time-framework",
"term": "Artian Time Framework",
"symbol": "",
"aliases": [
"QTT time framework",
"four-layer time map",
"ABC-address-proper-lab time map",
"Time Tilt / Time Drift bridge"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: relativistic time/proper-time clock grammar; differs by separating ABC source time, address time, proper time, laboratory time, and record time as access-related but non-identical layers.",
"summary": "The v5.1 time grammar that separates ABC time, address time, proper time, laboratory time, record time, and the fixed Time Tilt/Creation Drift age bridge instead of treating time as one primitive smooth parameter.",
"ontology": "ABC time is the source clock. Address time is completed membership in a w-tick. Proper time is the A2/speed-share clock face. Laboratory time is the finite instrument readout through I_clk and F_A3. Record time is durable address completion. Time Tilt and Creation Drift are source-to-lab clock readouts, not new fitted cosmological knobs. The layers agree in ordinary low-regime limits but are not ontologically identical.",
"math": "T = ABC source clock; T_w(X)=T_{a(X)}; theta_age=pi/8+pi/48=7pi/48; t0_lab=T0_ABC cos(7pi/48)=13.81184 Gyr for T0_ABC=15.4 Gyr; d tau=exp(-E_A2)sqrt(1-v^2/c^2)dT; dt_lab=I_clk F_A3 d tau.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; QTT Main Book v10.01 ABC clock, A2/A3, address, access, and proper-time anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"Time Tilt",
"Time Drift",
"ABC clock",
"Address-time completion",
"A2 proper-time metric shadow",
"A2 time-capacity consumption",
"I_clk",
"Quantized Now",
"High-regime twin theorem"
],
"external_see_also": [
{
"label": "Corpus Tree: current Arrow record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20761499"
},
{
"label": "Two Universes: time",
"href": "https://quantumtraction.org/two-universes/#time"
}
]
},
{
"id": "term-time-tilt",
"term": "Time Tilt",
"symbol": "",
"aliases": [
"clock tilt",
"two-clock projection angle",
"theta_0"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The fixed two-clock projection angle that tilts the ABC source clock into a laboratory clock readout.",
"ontology": "Time Tilt is not a tunable Hubble parameter. It is the clock/readout projection face shared with the broader cos(pi/8) family: a laboratory clock sees an access projection of the addressed source ledger rather than the source clock nakedly.",
"math": "theta_0 = pi/8; I_clk = cos(pi/8).",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; QTT Main Book v10.01 two-clock projection, ABC clock, and Creation Ledger anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
},
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/",
"https://quantumtraction.org/2026/06/03/why-cos-pi-8-is-not-a-speed-limit/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time",
"https://quantumtraction.org/observatory/#obs-zahra-hubble"
],
"related": [
"Artian Time Framework",
"Time Drift",
"I_clk",
"ABC clock",
"pi/8 projection",
"Hubble branch ratio"
],
"external_see_also": [
{
"label": "Corpus Tree: current Time Framework record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20761499"
},
{
"label": "Two Universes: time",
"href": "https://quantumtraction.org/two-universes/#time"
}
]
},
{
"id": "term-time-drift",
"term": "Time Drift",
"symbol": "",
"aliases": [
"Creation Drift",
"delta_cre",
"cosmic age bridge"
],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The A3 creation-ledger drift angle that, together with Time Tilt, maps the ABC source age to the laboratory cosmic age.",
"ontology": "Time Drift is the creation-side clock correction. It says the 15.4 Gyr ABC source age is not the same object as the laboratory age inferred by standard pipelines; the lab age is a readout through the fixed tilt-plus-drift angle.",
"math": "delta_cre^(0)=pi/48; theta_age=pi/8+pi/48=7pi/48; t0_lab=T0_ABC cos(7pi/48); with T0_ABC=15.4 Gyr, t0_lab=13.81184 Gyr.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; Creation Ledger concept DOI 10.5281/zenodo.20633582; cosmic-age and ABC-clock anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time",
"https://quantumtraction.org/observatory/#obs-zahra-hubble"
],
"related": [
"Artian Time Framework",
"Time Tilt",
"Creation Ledger",
"ABC clock",
"T0_ABC",
"Hubble branch ratio"
],
"external_see_also": [
{
"label": "Corpus Tree: current Time Framework record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20761499"
},
{
"label": "Derivation Atlas: Creation Ledger",
"href": "https://quantumtraction.org/derivation-atlas/#node-CREATIONLEDGER"
}
]
},
{
"id": "term-completed-address-monotone",
"term": "Completed-address monotone",
"symbol": "dN_addr/dT",
"aliases": [],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: entropy increase or cosmological initial-condition arrow; differs because QTT counts completed address creation directly instead of inserting low-entropy typicality as a separate postulate.",
"summary": "The A3 source statement that the completed-address count advances with nonnegative orientation.",
"ontology": "This is the source-side spine of the arrow theorem. It is a counted ledger condition, not a statistical preference over already-existing microstates.",
"math": "dN_addr/dT = Gamma_comp^A3(T) >= 0; sigma_T = sgn(dN_addr/dT) = +1.",
"book_pages": "A3 completed-address ledger anchors; arrow-of-time concept DOI 10.5281/zenodo.20761499; Creation Ledger concept DOI 10.5281/zenodo.20633582",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"A3",
"Creation Ledger",
"Quantized Now",
"Address-time completion",
"Past Hypothesis",
"T0_ABC"
],
"external_see_also": []
},
{
"id": "term-a2-time-capacity-consumption",
"term": "A2 time-capacity consumption",
"symbol": "",
"aliases": [
"Endurance clock slowing",
"weak-field A2 clock readout"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: gravitational time dilation; differs by reading local clock slowing as endurance-capacity expenditure in the same ABC tick.",
"summary": "The arrow paper's local-clock reading of A2: matter spends local support, so the laboratory clock receives a smaller share of the same ABC tick.",
"ontology": "Gravitational time dilation is not time reversal. It is a local endurance-consumption readout inside the same oriented ledger.",
"math": "d tau/dT = exp(Phi/c^2) sqrt(1-v^2/c^2) ~= (1+Phi/c^2) sqrt(1-v^2/c^2).",
"book_pages": "A2 endurance and weak-field clock-readout anchors; arrow-of-time concept DOI 10.5281/zenodo.20761499",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
},
{
"title": "A Parameter-Free Einstein–Hilbert Coefficient from a Sink-Current Endurance Ledger",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042843"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"Artian Time Framework",
"A2",
"A2 proper-time metric shadow",
"Endurance current",
"T",
"tau",
"ABC clock"
],
"external_see_also": []
},
{
"id": "term-a2-proper-time-metric-shadow",
"term": "A2 proper-time metric shadow",
"symbol": "",
"aliases": [
"proper-time metric shadow",
"A2 lapse shadow",
"QTT proper time"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "theorem within QTT",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: proper-time interval and metric lapse; differs because QTT reads proper time as the A2 endurance/speed-share clock face now tied to the A2 IR field-equation closure.",
"summary": "The current closure that proper time is the A2 endurance/speed-share clock face, now connected to the A2 infrared Einstein-field dynamics closure and the v5.1 Artian time framework.",
"ontology": "QTT keeps the ordinary proper-time interval as a valid laboratory shadow, but it does not make smooth metric time primitive. A2 endurance consumption reduces the local clock share; motion adds the speed-share factor; the lab then reads the result through clock/access factors. The later A2 Einstein-field paper closes the field-dynamics bridge around this clock face.",
"math": "d tau_QTT = exp(-E_A2(x)) sqrt(1-v^2/c^2) dT; d tau_QTT^2 = -(1/c^2) g_mu_nu^QTT dx^mu dx^nu.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; A2 Einstein-field concept DOI 10.5281/zenodo.20763263; A2 endurance, proper-time, weak-field, Schwarzschild, and IR field-equation anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
},
{
"title": "A Parameter-Free Einstein–Hilbert Coefficient from a Sink-Current Endurance Ledger",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042843"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time",
"https://quantumtraction.org/observatory/#obs-a2-einstein-field"
],
"related": [
"Artian Time Framework",
"Arrow of Time",
"A2",
"A2 time-capacity consumption",
"A2 Einstein-field dynamics",
"Finite-address correction map",
"tau",
"T",
"ABC clock"
],
"external_see_also": []
},
{
"id": "term-a2-einstein-field-dynamics",
"term": "A2 Einstein-field dynamics",
"symbol": "",
"aliases": [
"A2 endurance-to-Einstein bridge",
"Einstein-field IR shadow",
"A2 IR field dynamics"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: Einstein field equations and GR weak-field tests; differs because QTT derives them as the infrared metric shadow of finite A2 endurance, not as source-continuum ontology.",
"summary": "The theorem that the infrared Einstein field equations are the laboratory metric shadow of A2 endurance, not a primitive smooth-continuum source law.",
"ontology": "A2 supplies sink counts and support current. The laboratory can then draw a smooth metric field only after the IR uniqueness gate is passed: locality, address-relabeling covariance, second-order capacity response, and local endurance closure. QTT therefore recovers GR's field equation as an infrared readout while still denying the human-invented smooth continuum as source ontology.",
"math": "G_mu_nu + Lambda_A3 g_mu_nu = (8*pi*G_A/c^4) T_mu_nu^A2; G_A = ell_tilde^2 c^3 / hbar.",
"book_pages": "A2 Einstein-field concept DOI 10.5281/zenodo.20763263; A2 endurance, G, proper-time, Einstein-Hilbert, and continuum-shadow anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
},
{
"title": "A Parameter-Free Einstein–Hilbert Coefficient from a Sink-Current Endurance Ledger",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042843"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a2-einstein-field"
],
"related": [
"A2",
"Endurance current",
"G",
"A2 proper-time metric shadow",
"Finite-address correction map",
"Continuum shadow",
"Human Invented Universe",
"Artian's Universe"
],
"external_see_also": [
{
"label": "Derivation Atlas: A2 Einstein-field dynamics",
"href": "https://quantumtraction.org/derivation-atlas/#node-A2-EINSTEIN-FIELD"
},
{
"label": "Two Universes: gravity",
"href": "https://quantumtraction.org/two-universes/#gravity"
}
]
},
{
"id": "term-finite-address-correction-map",
"term": "Finite-address correction map",
"symbol": "",
"aliases": [
"A2 finite-address correction",
"A2 patch-count estimator",
"traction-count covariance",
"causal shell turn-on"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: stochastic/covariance correction to a coarse field readout; differs because the event count, shell coverage, causal turn-on, and covariance are fixed by the A2 address ledger.",
"summary": "The first QTT-specific correction map under the smooth A2 Einstein/Newton field: shell coverage, finite patch count, estimator covariance, and causal turn-on.",
"ontology": "The smooth field is a mean readout over many address events. The correction map refuses imaginary sub-cell motion: a laboratory patch sees integer space-quantum hits whose averages and fluctuations produce the apparent continuous acceleration field.",
"math": "f_cover=mu/n^2; lambda=(M/m_tilde)(Delta T/t_tilde)A/(4*pi*r^2); E[g_hat_P]=-(G_A M/r^2) r_hat; Var(g_hat_P)/|E g_hat_P|^2=1/lambda; E[g_hat_P(r,k)]=-(G_A M/r^2)Theta(k-n) r_hat.",
"book_pages": "A2 Einstein-field concept DOI 10.5281/zenodo.20763263; finite shell coverage, causal turn-on, patch estimator, and count-covariance anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a2-einstein-field"
],
"related": [
"A2 Einstein-field dynamics",
"Endurance current",
"A2",
"Access window",
"No-smuggling rule",
"Continuum shadow"
],
"external_see_also": [
{
"label": "Derivation Atlas: A2 Einstein-field dynamics",
"href": "https://quantumtraction.org/derivation-atlas/#node-A2-EINSTEIN-FIELD"
},
{
"label": "Corpus Tree: A2 field record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20763263"
}
]
},
{
"id": "term-ab-holonomy",
"term": "AB holonomy",
"symbol": "",
"aliases": [
"Aharonov-Bohm holonomy",
"Artian holonomy",
"A4 dial holonomy",
"A2 endurance holonomy"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The QTT source-access reading of electromagnetic and gravitational Aharonov-Bohm phases.",
"ontology": "Electromagnetic AB is the A4 real-J dial reading of a completed address-loop rotation. Gravitational AB is the A2 endurance/proper-time reading of a matter-wave action difference. The usual complex phase is the laboratory projection J -> i, not the source primitive.",
"math": "W_gamma^QTT = exp{J[(q/(hbar c)) int_gamma A_mu dx^mu - (mc^2/hbar) int_gamma d tau_A2]}; lambda_e^AB=|delta S_e^AB|/(hbar n_e)<=1.",
"book_pages": "pp. 268, 381, 435-438, 535, 751",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian Holonomy and the Aharonov-Bohm Effect: A QTT Source-Access Interpretation of Electromagnetic and Gravitational AB Phases",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20772090"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-ab-holonomy"
],
"related": [
"A4",
"J",
"A2",
"A2 proper-time metric shadow",
"A6",
"Source/readout split",
"Access window",
"Maxwell address-transport theorem"
],
"external_see_also": [
{
"label": "Derivation Atlas: AB holonomy",
"href": "https://quantumtraction.org/derivation-atlas/#node-AB-HOLONOMY"
},
{
"label": "Corpus Tree: AB holonomy record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20772090"
}
]
},
{
"id": "term-a2-source-packet",
"term": "A2 source packet",
"symbol": "",
"aliases": [
"finite A2 address packet",
"A2 blind-test packet",
"endurance source packet"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The finite source object a blind A2 tabletop test must preserve beneath the same reduced infrared phase.",
"ontology": "Ordinary GR/QM may compress two protocols into the same reduced action. QTT asks whether the finite A2 address packet underneath that phase remains distinguishable through declared covariance rows. The packet must be frozen before unblinding.",
"math": "A_A2(P)=({e},{delta S_e^A2},{n_e},{lambda_e^A2},C_P,Sigma_P^lab); lambda_e^A2=|delta S_e^A2|/(hbar n_e); Theta_IR(P_A)=Theta_IR(P_B) but A_A2(P_A)!=A_A2(P_B).",
"book_pages": "pp. 268, 381, 435-438, 535, 751",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A2 Blind Tabletop Gravity Tests: Three No-Retune Source-Access Tests of Endurance Holonomy Beyond Ordinary GR/QM Shadows",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20772326"
},
{
"title": "Artian Holonomy and the Aharonov-Bohm Effect: A QTT Source-Access Interpretation of Electromagnetic and Gravitational AB Phases",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20772090"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a2-blind-tabletop-gravity"
],
"related": [
"A2",
"AB holonomy",
"A2 Einstein-field dynamics",
"Finite-address correction map",
"Access window",
"No-smuggling rule"
],
"external_see_also": [
{
"label": "Derivation Atlas: A2 blind tabletop",
"href": "https://quantumtraction.org/derivation-atlas/#node-A2-BLIND-TABLETOP"
},
{
"label": "Corpus Tree: blind tabletop record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20772326"
}
]
},
{
"id": "term-blind-tabletop-gravity-tests",
"term": "Blind tabletop gravity tests",
"symbol": "",
"aliases": [
"A2 blind tabletop gravity",
"equal-action unequal-load test",
"echo-cancelled endurance covariance"
],
"category": "predictions-tests",
"category_label": "Predictions and Blind Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "Three proposed no-retune A2 source-access tests designed to distinguish finite endurance packets hidden below the same ordinary infrared phase.",
"ontology": "The test is not to remeasure the ordinary gravitational phase. It is to build blinded protocol pairs that standard GR/QM compress together while QTT keeps different finite A2 packet structure.",
"math": "Test 1: equal-action / unequal-load gravitational AB chopper. Test 2: echo-cancelled endurance covariance with Theta_E=0 and B_A2(E)>0. Test 3: quantum-source holonomy witness without a source graviton.",
"book_pages": "pp. 114, 117-124, 428-438, 1247-1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A2 Blind Tabletop Gravity Tests: Three No-Retune Source-Access Tests of Endurance Holonomy Beyond Ordinary GR/QM Shadows",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20772326"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a2-blind-tabletop-gravity"
],
"related": [
"A2 source packet",
"AB holonomy",
"A2",
"A6",
"No-smuggling rule",
"Constructor firewall"
],
"external_see_also": [
{
"label": "Derivation Atlas: A2 blind tabletop",
"href": "https://quantumtraction.org/derivation-atlas/#node-A2-BLIND-TABLETOP"
},
{
"label": "Corpus Tree: blind tabletop record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20772326"
}
]
},
{
"id": "term-quantized-lorentz-boost-ledger",
"term": "Quantized Lorentz boost ledger",
"symbol": "",
"aliases": [
"finite boost ledger",
"quantized boost ledger",
"finite address boost"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: Lorentz boost/rapidity kinematics; differs because high-regime boosts are finite address-tick impulse updates rather than smooth gamma-infinity ontology.",
"summary": "The current high-regime replacement for treating Lorentz boosting as an infinitely smooth continuum operation.",
"ontology": "Ordinary SR is recovered in the low-regime shadow, but QTT refuses gamma infinity and v=c as physical completed-address objects. Boosting is a finite impulse-per-tick ledger over completed address events.",
"math": "p_{n+1}=p_n+N_n M_* c; y_{n+1}=arcsinh(sinh y_n + N_n M_*/m); v_n=c tanh y_n.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; Luminal J-Rotor, quantized Lorentz, A5/A6, and finite address-tick anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "The Wave Equation as a Shadow: The Discrete Real-J Dial Ledger, Its Exact Stencil Dispersion, and the Linear-Free Lorentz-Violation Falsifier",
"date": "2026-06-16",
"concept_doi": "10.5281/zenodo.20723081"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Artian Time Framework",
"High-regime twin theorem",
"A2 proper-time metric shadow",
"A5-X",
"A6",
"pi/8 projection"
],
"external_see_also": []
},
{
"id": "term-high-regime-twin-theorem",
"term": "High-regime twin theorem",
"symbol": "",
"aliases": [
"high-regime twin deviation",
"finite-address twin theorem",
"completed-address twin sum"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed / lab test pending",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: twin paradox proper-time integral; differs because QTT predicts a finite completed-address tick sum in high-capacity regimes after low-regime SR is recovered.",
"summary": "The current twin row: low-regime SR is recovered, while high-capacity paths are compared as finite sums over completed address ticks.",
"ontology": "The two twins do not merely trace ideal smooth worldlines. At high regime, the physical comparison is between completed address histories with A2/A3 clock-access factors and finite boost ticks. The laboratory test remains pending where QTT corrections are independently locked and resolvable.",
"math": "Delta t_i^QTT = sum_{w_n in gamma_i} I_clk F_A3(w_n) exp(-E_A2(w_n)) sqrt(1-v_{i,n}^2/c^2) t_tilde.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; twin-clock, A2/A3 clock-access, finite boost, and address-history anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
},
{
"title": "The Folman Phase Spine, Access-Law Timing, Dyadic J-Rotor Holonomy, 4π Periodicity, T 3 Scaling, and the Planck-Mass Superposition Ceiling",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123495"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Artian Time Framework",
"Twin address-path theorem",
"Quantized Lorentz boost ledger",
"A2 proper-time metric shadow",
"ABC clock"
],
"external_see_also": []
},
{
"id": "term-past-hypothesis",
"term": "Past Hypothesis",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "conditional theorem",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: low-entropy initial condition; differs because QTT derives the low-past reading once a first tick and A3 orientation are granted, while keeping that first-tick root gate explicit.",
"summary": "The low-past condition re-read in QTT as a consequence of an A3 first tick and oriented completed-address ledger, not as an independent typicality postulate.",
"ontology": "The arrow paper is explicit: QTT does not claim the first tick T0 or the Z2 orientation root is derived from deeper structure here. It shows that once the first tick and orientation are granted, the ordinary low-past/entropy-arrow reading follows from completed-address creation.",
"math": "T0 + sigma_T=+1 + dN_addr/dT>=0 -> low-past readout; no independent probabilistic Past Hypothesis is inserted.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; first-tick/T0_ABC anchors pp. 540, 711-715, 1199-1205",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"Completed-address monotone",
"T0_ABC",
"Creation Ledger",
"Entropy anchored modular charge"
],
"external_see_also": []
},
{
"id": "term-retarded-support-theorem",
"term": "Retarded support theorem",
"symbol": "",
"aliases": [
"radiative retarded support",
"support-level radiation arrow"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "support-level ancestor / current operator row closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: retarded Green functions and radiation boundary conditions; differs by tying allowed support to nonnegative completed-address advance rather than adding retardedness as an independent convention.",
"summary": "The support-level QTT radiation arrow: retarded support is allowed only along nonnegative completed-address advance. In the current Arrow paper this ancestor statement is promoted to the closed retarded address-operator row.",
"ontology": "Retardedness is not treated as a loose convention pasted onto symmetric equations. In earlier versions it was held at support level; the current family closes the operator statement as the physical forward address operator.",
"math": "supp G_ret subseteq {Delta N_addr >= 0}; P_T = (1/2)(I + sigma_T T_hat).",
"book_pages": "radiative/outgoing-support anchors and arrow-of-time concept DOI 10.5281/zenodo.20761499; superseded operationally by the retarded address operator row in the current concept family",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "Maxwell's Equations Are the Monadic Address-Transport Theorem in Quantum Traction Theory",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20060666"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"Completed-address monotone",
"Retarded address operator",
"Maxwell transport",
"A3",
"Access window"
],
"external_see_also": []
},
{
"id": "term-quantized-now",
"term": "Quantized Now",
"symbol": "",
"aliases": [
"QTT Now",
"finite Now",
"completed-address present"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: simultaneity slice, present moment, or local time label; differs because QTT defines Now as finite membership in a completed reality-address tick.",
"summary": "QTT's definition of Now as finite membership in a completed reality-address tick.",
"ontology": "Now is not an infinitely thin smooth hypersurface and not merely a psychological present. It is the finite set of records whose completed address support belongs to the active reality tick.",
"math": "Now_R(T_n) = {X in R : X in M(w_n)}, T_w(X)=T_a(X), dT_w=t_tilde dn.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; QTT Main Book v10.01 A2/A3, address, access, and ABC-clock anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"Address-time completion",
"Completed address event",
"ABC clock",
"Access window"
],
"external_see_also": []
},
{
"id": "term-address-time-completion",
"term": "Address-time completion",
"symbol": "",
"aliases": [
"address time",
"w-address time"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: event time or coordinate time; differs because QTT ties time to completed address membership T_w(X)=T_a(X), not passive lab-clock copying.",
"summary": "The rule that event-time is completed address membership before a laboratory clock reads it.",
"ontology": "A lab clock does not manufacture source time. It reads a completed address order through an access factor. This keeps the source ledger prior to coordinate convention.",
"math": "T_w(X)=T_a(X), dT_w=t_tilde dn; dt_lab = I_clk F_A3 exp(-E_A2) sqrt(1-v^2/c^2) dT.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; QTT Main Book v10.01 completed-address and ABC-clock anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Quantized Now",
"Arrow of Time",
"A3",
"A2 time-capacity consumption",
"Twin address-path theorem"
],
"external_see_also": []
},
{
"id": "term-no-past-rewrite-boundary",
"term": "No-past-rewrite boundary",
"symbol": "",
"aliases": [
"no past rewrite",
"delayed-choice boundary",
"quantum-time no-past-rewrite theorem"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: delayed-choice and quantum-eraser interpretation; differs because QTT allows unresolved shared support to be refined without rewriting sealed completed records.",
"summary": "Delayed-choice-style experiments refine unresolved shared address support; they do not rewrite sealed past records.",
"ontology": "QTT allows a later access choice to decide which unresolved shared support becomes readable. It does not allow a completed address event to be re-edited after closure.",
"math": "sealed completed records stay sealed; only unresolved support inside the access window is refined.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; measurement/access and delayed-choice anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"Quantized Now",
"Measurement as access",
"Access Law",
"Born rule"
],
"external_see_also": []
},
{
"id": "term-twin-address-path-theorem",
"term": "Twin address-path theorem",
"symbol": "",
"aliases": [
"twin address path",
"address-path clock theorem"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: twin paradox proper-time integral; differs by reading the clock difference as two positive address-access integrals over different source histories.",
"summary": "The QTT reading of twin-clock asymmetry as different positive clock-access integrals over different address histories.",
"ontology": "The difference is not a contradiction in reciprocal motion. Each clock carries a different access path through the same oriented source ledger.",
"math": "Delta t_A - Delta t_B = int_gammaA C_T[gamma_A] dT - int_gammaB C_T[gamma_B] dT.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; A2/A3 clock-access anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
},
{
"title": "The Folman Phase Spine, Access-Law Timing, Dyadic J-Rotor Holonomy, 4π Periodicity, T 3 Scaling, and the Planck-Mass Superposition Ceiling",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123495"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"Address-time completion",
"ABC clock",
"A2 time-capacity consumption",
"pi/8 projection"
],
"external_see_also": []
},
{
"id": "term-retarded-address-operator",
"term": "Retarded address operator",
"symbol": "",
"aliases": [
"retarded address-operator theorem",
"G_J plus",
"forward address Green operator"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: retarded Green operator; differs because QTT closes the physical operator as the forward address operator G_J^+ and blocks advanced source-to-physical support.",
"summary": "The current QTT radiative arrow statement: the physical operator is the forward completed-address operator and the advanced source-to-physical channel is blocked.",
"ontology": "Radiation does not need retardedness pasted onto a symmetric equation as taste. The physical operator has forward address support because completed source records only advance in the A3 orientation.",
"math": "G_phys^QTT = G_J^+ = Theta_w L_J^-1; Pi_phys G_J^- Pi_src = 0; supp G_phys^QTT subset {Delta N_addr >= 0}.",
"book_pages": "arrow-of-time concept DOI 10.5281/zenodo.20761499; Maxwell/radiative address-operator anchors",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
},
{
"title": "Maxwell's Equations Are the Monadic Address-Transport Theorem in Quantum Traction Theory",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20060666"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/19/past-is-past-gone-is-gone/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-arrow-of-time"
],
"related": [
"Arrow of Time",
"Retarded support theorem",
"Maxwell transport",
"A3",
"Access Law"
],
"external_see_also": []
},
{
"id": "term-a4",
"term": "A4",
"symbol": "",
"aliases": [
"Real U(1) J-dial",
"Reality Dimension"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Axiom",
"standard_physics_correlate": "nearest standard frame: complex phase/U(1) gauge structure; differs by replacing primitive i with a real address-dial rotor J.",
"summary": "Each address carries an internal S1 dial; its quarter-turn generator J packages what standard notation writes as complex phase.",
"ontology": "A4 makes phase and charge into address-dial holonomy rather than an unexplained complex-number primitive. The standard complex unit is the laboratory shorthand for a real two-component rotor.",
"math": "J^2 = -I; e^{J theta} = cos theta + J sin theta; q = N e0.",
"book_pages": "pp. 246-250, 381, 1248",
"anchor_note": "Book v10.01: Axiom A4 / internal S1 anchor and U(1) gauge section.",
"concept_doi_families": [
{
"title": "Modular-holonomy partitions determine the Standard Model charge ledger",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045140"
},
{
"title": "Maxwell's Equations Are the Monadic Address-Transport Theorem in Quantum Traction Theory",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20060666"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"J",
"Dial holonomy",
"Charge ledger",
"Maxwell transport"
],
"external_see_also": []
},
{
"id": "term-a5-x",
"term": "A5-X",
"symbol": "",
"aliases": [
"Completed address events",
"World-cell address"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Axiom",
"standard_physics_correlate": "nearest standard frame: lattice site or event; differs because an address is completed modular capacity, not a background point.",
"summary": "The sharpened A5 reading: an address w is one completed modular-capacity event, not a primitive background lattice point.",
"ontology": "A5-X prevents the book from smuggling discreteness into a coordinate label. The counted object is a completed event carrying finite four-volume, action throughput, and bundle closure.",
"math": "Q_E^bundle = 2 pi; E_E t_tilde = hbar; Delta V_4 = 4 pi ell_tilde^4.",
"book_pages": "pp. 56, 250-253, 263",
"anchor_note": "Book v10.01: A5-X noncircular address-ruler theorem and Axiom A5 section.",
"concept_doi_families": [
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
},
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Address w",
"Completed address event",
"w-co-location",
"A6",
"A7"
],
"external_see_also": []
},
{
"id": "term-a6",
"term": "A6",
"symbol": "",
"aliases": [
"Law of Quantum Capacity",
"Finite capacity"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Axiom",
"standard_physics_correlate": "nearest standard frame: UV cutoff/regularity bound; differs because the bound is a physical per-address capacity law, not a regulator trick.",
"summary": "Per-address energy, power, action, and regularity ceilings; the rule that a finite address event cannot overspend its capacity.",
"ontology": "A6 is both a UV discipline and a bookkeeping rule: one funded address transaction can have many laboratory shadows, but those shadows cannot be counted as separate hidden mechanisms.",
"math": "E_cap = hbar c / ell_tilde; P_cap = hbar / t_tilde^2; |S_w| <= hbar Delta T / t_tilde.",
"book_pages": "pp. 253-262, 304, 753",
"anchor_note": "Book v10.01: Axiom A6 / capacity and regularity section.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
},
{
"title": "The Casimir--Bundle Theorem: Access-Law Boundary Projection, A7 Modular Closure, and the Vacuum--Gravity Schism",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20099862"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A6 Hadamard center-sheet half-share theorem",
"Capacity",
"E_cap",
"No-smuggling",
"A7"
],
"external_see_also": []
},
{
"id": "term-a7",
"term": "A7",
"symbol": "",
"aliases": [
"Law of Bundled Existence",
"Modular completion"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Axiom",
"standard_physics_correlate": "nearest standard frame: superselection/completion rule; differs by requiring visible and unresolved same-universe parts to close one modular bundle.",
"summary": "Every physical excitation at an address is completed by a visible plus unresolved same-universe complement closing one 2pi modular bundle.",
"ontology": "Existence is never a partial naked object at one address. The visible part and its unresolved complement are one same-universe bundle, with the hidden part hidden only relative to an access cut.",
"math": "Q_w^bundle = Q_w^vis + Q_w^hid = 2 pi.",
"book_pages": "pp. 262-268, 352, 751",
"anchor_note": "Book v10.01: Axiom A7 / bundled existence section.",
"concept_doi_families": [
{
"title": "A modular-charge fifth face of the Unified Equilibrium Law in Quantum Traction Theory: E_P = (ℏc/2πℓ_P) Q_P at A7 saturation",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.19975260"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
},
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
},
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "The Casimir--Bundle Theorem: Access-Law Boundary Projection, A7 Modular Closure, and the Vacuum--Gravity Schism",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20099862"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"A7-U",
"A7 horizon visible/hidden cut",
"Black-hole information-loss denial",
"Modular charge",
"Bundle completion",
"Planck-mass superselection"
],
"external_see_also": []
},
{
"id": "term-a7-u",
"term": "A7-U",
"symbol": "",
"aliases": [
"Same-universe completion guardrail",
"Distributed Planck bundles",
"No-pure-particle theorem"
],
"category": "axioms-spine",
"category_label": "Axioms and Ontological Spine",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Axiom",
"standard_physics_correlate": "nearest standard frame: hidden-sector constraint; differs by forbidding an external reservoir or other-universe completion.",
"summary": "The same-universe reading of A7 after the v4.0 upgrade: hidden completion is not an external universe, reservoir, or adjustable compensator; it is unresolved visible modular share inside the same completed bundle.",
"ontology": "A7-U exists to stop missing energy, mass, phase, purity, or determinant normalization from being hidden in an unobservable elsewhere. The full w-bundle is the source object; every finite laboratory subsystem is an access marginal. That is why the upgraded paper speaks of access-relative purity rather than absolute purity of a detached visible piece.",
"math": "Q_w^bundle = sum_k Q_{k,w}^vis = 2 pi; [X,P]=J hbar(I-M_{O,S,w}); Delta X Delta P >= (hbar/2)(1-eta_{O,S,w}).",
"book_pages": "pp. 11, 263-266, 353, 1251; A7U distributed-bundle source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924",
"anchor_note": "Book v10.01: A7-U same-universe completion guardrail; source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924; black-hole information concept DOI 10.5281/zenodo.20346916.",
"concept_doi_families": [
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
},
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
},
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "From Rotor to Wavefunction: How Schrödinger's Cat Is Gone",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20119662"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a7u-matter-wave-visibility",
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"A7",
"Access-relative purity",
"A7 horizon visible/hidden cut",
"Black-hole information-loss denial",
"A7U-G finite chamber gate",
"A7U chamber reference spectrum",
"A7U access floor",
"Matter-wave visibility bridge",
"Q_bundle",
"Access window"
],
"external_see_also": [
{
"label": "Derivation Atlas: A7U",
"href": "https://quantumtraction.org/derivation-atlas/#node-A7U"
},
{
"label": "Derivation Atlas: A7 black-hole information",
"href": "https://quantumtraction.org/derivation-atlas/#node-A7-BH-INFORMATION"
},
{
"label": "Corpus Tree: transport record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20796924"
},
{
"label": "Corpus Tree: black-hole information record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20346916"
}
]
},
{
"id": "term-black-hole-information-loss-denial",
"term": "Black-hole information-loss denial",
"symbol": "",
"aliases": [
"A7 black-hole information theorem",
"black-hole information paradox denial",
"no pure-to-mixed source loss"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: black-hole information paradox; differs because QTT derives the Bekenstein count without a Hawking source constructor, denies source-level pure-to-mixed destruction, and allows mixed laboratory marginals only through visible/hidden access cuts.",
"summary": "The QTT claim that a black hole does not destroy information at the source: the horizon is an access cut through one finite A7/A6 ledger, and Bekenstein entropy is counted without invoking Hawking radiation as a source constructor.",
"ontology": "A black hole is a finite A2/A6/A7 bundled object. An outside observer sees a horizon-cut marginal, so an exterior channel may look thermal and mixed. QTT denies that this marginal is the whole source state. The hidden face is same-universe completion, not an external reservoir, A7 closure preserves the completed modular ledger, and the Bekenstein quarter comes from boundary capacity counting before any thermal readout.",
"math": "Q_Sigma=8*pi*ell_tilde^2; N_H=A/(4*ell_tilde^2); S_H^QTT=k_B*A/(4*ell_tilde^2).\nrho_vis(T)=Tr_hid rho_src(T); forbidden source move: pure rho_src -> fundamentally mixed rho_src by horizon loss.",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; QTT Main Book v10.01 A2/A6/A7, entropy, access, horizon, Page-envelope, and finite-core anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; QTT Main Book v10.01 A2/A6/A7, entropy, access, horizon, Page-envelope, and finite-core anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
},
{
"title": "Entropy Production as Anchored Modular Charge: A Parameter-Free QTT Derivation of the Second Law and Its Area-Law, Page-Bound and Transport Consequences",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045306"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"A7 horizon visible/hidden cut",
"Bekenstein without Hawking",
"No Hawking constructor",
"Effective horizon temperature access readout",
"Source-unitary evaporation",
"Hawking/greybody access readout",
"Page-envelope bound",
"Finite black-hole core",
"A7-U",
"Access-relative purity"
],
"external_see_also": [
{
"label": "Derivation Atlas: A7 black-hole information",
"href": "https://quantumtraction.org/derivation-atlas/#node-A7-BH-INFORMATION"
},
{
"label": "Two Universes: black-hole core",
"href": "https://quantumtraction.org/two-universes/#gravity-71"
},
{
"label": "Corpus Tree: black-hole information record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20346916"
}
]
},
{
"id": "term-a7-horizon-visible-hidden-cut",
"term": "A7 horizon visible/hidden cut",
"symbol": "",
"aliases": [
"horizon visible-hidden split",
"A7 horizon cut",
"visible/hidden modular share"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: horizon tracing / outside-observer marginal; differs because QTT treats the split as access-relative, not as an ontological loss channel.",
"summary": "The access split at a horizon: visible and hidden faces are different laboratory cuts through one completed same-universe bundle.",
"ontology": "The horizon hides part of the completed bundle from a given observer, but hiding is not annihilation. The cut changes what can be read; it does not change what exists at the source.",
"math": "H_src = H_vis ⊕ H_hid as access bookkeeping; Q_bundle = Q_vis + Q_hid = 2pi.",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; A7 same-universe completion, Access Law, entropy, and horizon visible/hidden anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; A7 same-universe completion and access-window anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
},
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"A7",
"A7-U",
"Q_bundle",
"Access window",
"Black-hole information-loss denial",
"Access-relative purity"
],
"external_see_also": [
{
"label": "Corpus Tree: black-hole information record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20346916"
},
{
"label": "Lexicon: Q_bundle",
"href": "#term-q-bundle"
}
]
},
{
"id": "term-source-unitary-evaporation",
"term": "Source-unitary evaporation",
"symbol": "",
"aliases": [
"unitary ledger evaporation",
"source-unitary black-hole evaporation"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed / microscopic programme pending",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: unitary black-hole evaporation programme; differs because QTT sources unitarity in A7 bundle closure and A6 finite capacity rather than in an added rescue mechanism.",
"summary": "The QTT reading of any black-hole drain/readout as source-unitary ledger transfer. Evaporation is not needed to save unitarity, and Hawking radiation is not a source constructor.",
"ontology": "The source ledger transfers accessible support through finite A2/A7 channels only if a declared exterior channel exists; it does not need radiation to keep information alive. What is pending is the fully populated species-resolved microscopic horizon S-matrix, not the permission to destroy source information.",
"math": "rho_src(T2)=U_A7(T2,T1) rho_src(T1) U_A7^dagger; Tr rho_src and source purity are preserved inside the legal bundle.\npartial S_H^QTT/partial(Hawking flux)=0.",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; A7 bundle closure, A2 transfer, entropy, and Page-envelope anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; A7 bundle closure, A2 transfer, entropy, and microscopic S-matrix programme anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "Entropy Production as Anchored Modular Charge: A Parameter-Free QTT Derivation of the Second Law and Its Area-Law, Page-Bound and Transport Consequences",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045306"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"Black-hole information-loss denial",
"Bekenstein without Hawking",
"No Hawking constructor",
"Hawking/greybody access readout",
"Page-envelope bound",
"A7 horizon visible/hidden cut",
"Entropy anchored modular charge"
],
"external_see_also": []
},
{
"id": "term-bekenstein-without-hawking",
"term": "Bekenstein without Hawking",
"symbol": "",
"aliases": [
"Bekenstein entropy without Hawking radiation",
"A7/A6 black-hole quarter",
"black-hole entropy without Hawking constructor"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "GREEN source count closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: Bekenstein-Hawking entropy; differs because QTT derives the area quarter from A7/A6 boundary counting without needing Hawking radiation as a source constructor.",
"summary": "The v4.0 black-hole entropy claim: QTT derives the Bekenstein area quarter from A7/A6 boundary capacity counting before any radiation or temperature readout is introduced.",
"ontology": "The entropy is a count of legal horizon boundary addresses. The quarter is not borrowed from a Hawking flux calculation; it is the boundary-share ratio 2pi/8pi. This lets the black-hole information row keep the observed Bekenstein structure while refusing to treat Hawking radiation as the source constructor.",
"math": "Q_Sigma=8*pi*ell_tilde^2; N_H=2*pi*A/Q_Sigma=A/(4*ell_tilde^2); S_H^QTT=k_B*A/(4*ell_tilde^2); 1/4=2pi/8pi.",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; A7/A6 boundary-count entropy anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; A7/A6 boundary-count entropy anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "Entropy Production as Anchored Modular Charge: A Parameter-Free QTT Derivation of the Second Law and Its Area-Law, Page-Bound and Transport Consequences",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045306"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"Black-hole information-loss denial",
"No Hawking constructor",
"Effective horizon temperature access readout",
"A7 horizon visible/hidden cut",
"Entropy anchored modular charge"
],
"external_see_also": [
{
"label": "Derivation Atlas: A7 black-hole information",
"href": "https://quantumtraction.org/derivation-atlas/#node-A7-BH-INFORMATION"
},
{
"label": "Corpus Tree: black-hole information record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20346916"
}
]
},
{
"id": "term-no-hawking-constructor",
"term": "No Hawking constructor",
"symbol": "",
"aliases": [
"Hawking constructor rejected",
"Hawking radiation source constructor rejected",
"no Hawking source ontology"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-constructor rejected",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: Hawking radiation as black-hole source mechanism; differs because QTT rejects Hawking radiation as source ontology while allowing optional downstream thermal-looking access phenomenology.",
"summary": "The v4.0 firewall: Hawking radiation is not needed and is not allowed as a source constructor for QTT black-hole entropy or unitarity.",
"ontology": "QTT can allow a thermal-looking exterior channel as a downstream access/readout question, but the source theorem is closed before that channel appears. Radiation may be tested as phenomenology; it may not be used as the reason information survives, the reason entropy exists, or the reason the horizon is finite.",
"math": "partial S_H^QTT/partial(T_H^Hawking)=0; partial S_H^QTT/partial(Hawking flux)=0; partial S_H^QTT/partial(vacuum pair creation)=0.",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; source-constructor firewall and optional thermal-access anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; source-constructor firewall and optional thermal-access anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"Bekenstein without Hawking",
"Effective horizon temperature access readout",
"Hawking/greybody access readout",
"Black-hole information-loss denial",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-effective-horizon-temperature-access-readout",
"term": "Effective horizon temperature access readout",
"symbol": "",
"aliases": [
"T_eff horizon readout",
"first-law horizon temperature",
"Hawking temperature as access derivative"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "access readout closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: Hawking temperature; differs because QTT reads the same temperature form as a first-law/access derivative after entropy is fixed, not as proof of vacuum pair creation.",
"summary": "The QTT reading of the familiar horizon-temperature form as a first-law/access derivative after A7/A6 entropy is already fixed.",
"ontology": "The same algebraic temperature form can appear without carrying Hawking source ontology. In QTT, temperature is the laboratory slope of energy against the already-counted entropy ledger, not proof that vacuum pairs created the entropy or destroyed information.",
"math": "T_eff=(partial E/partial S_H^QTT)_{J,Q}=hbar*kappa_s/(2*pi*k_B*c).",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; first-law/access temperature and A2 horizon-shadow anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; first-law/access temperature and A2 horizon-shadow anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"Bekenstein without Hawking",
"No Hawking constructor",
"Hawking/greybody access readout",
"Access window",
"A2 Einstein-field dynamics"
],
"external_see_also": []
},
{
"id": "term-hawking-greybody-access-readout",
"term": "Hawking/greybody access readout",
"symbol": "",
"aliases": [
"Hawking access readout",
"greybody access transfer",
"thermal horizon marginal"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "optional access phenomenology / source constructor rejected",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: Hawking radiation and greybody factors; differs because QTT keeps any thermal-looking exterior channel as optional laboratory access phenomenology, not as a source constructor or evidence for source-level information destruction.",
"summary": "The QTT interpretation of any Hawking-like thermality or greybody spectrum as optional access/readout phenomenology rather than source-level information erasure or entropy construction.",
"ontology": "QTT does not need Hawking radiation as a rescue mechanism for black-hole information and does not use it to construct Bekenstein entropy. A thermal-looking radiation channel, if observed and convention-matched, is a laboratory marginal produced by access transfer weights after the source ledger is already finite and unitary.",
"math": "N_out^lab(omega)=Gamma_access(omega) N_access(omega); the access spectrum is not a pure-to-mixed source map.",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; optional thermal exterior flux, greybody/access, and source/readout split anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; optional thermal exterior flux, greybody/access, and source/readout split anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "Artian's Time Framework: The Arrow of Time, Quantized Now, Time Drift, Time Tilt, and the w-Address of Reality–Space–Time",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20761499"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"No Hawking constructor",
"Effective horizon temperature access readout",
"Source-unitary evaporation",
"A7 horizon visible/hidden cut",
"Access window",
"A2 Einstein-field dynamics"
],
"external_see_also": []
},
{
"id": "term-page-envelope-bound",
"term": "Page-envelope bound",
"symbol": "",
"aliases": [
"QTT Page envelope",
"fine-grained radiation entropy envelope"
],
"category": "predictions-tests",
"category_label": "Predictions and Blind Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "future comparator",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: Page curve / fine-grained entropy bound; differs because QTT treats it as a source-ledger envelope to test after greybody/access conventions are frozen.",
"summary": "The QTT future-test envelope for black-hole radiation entropy: fine radiation entropy cannot exceed the emitted/remnant source-ledger bounds once access conventions are fixed.",
"ontology": "The bound is an audit grammar, not a completed astronomical measurement. It keeps Page-curve language honest by separating source entropy, emitted support, remaining support, and laboratory access transfer.",
"math": "S_rad^fine(T) <= min(S_emitted(T), S_remaining(T)); t_Page/t_drain=1-1/(2*sqrt(2)) for the leading envelope scaling.",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; entropy concept DOI 10.5281/zenodo.20045306; fine-grained radiation entropy and source-ledger anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; entropy concept DOI 10.5281/zenodo.20045306; fine-grained radiation entropy and source-ledger anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "Entropy Production as Anchored Modular Charge: A Parameter-Free QTT Derivation of the Second Law and Its Area-Law, Page-Bound and Transport Consequences",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045306"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information"
],
"related": [
"Black-hole information-loss denial",
"Source-unitary evaporation",
"Entropy anchored modular charge",
"A7 horizon visible/hidden cut"
],
"external_see_also": []
},
{
"id": "term-finite-black-hole-core",
"term": "Finite black-hole core",
"symbol": "",
"aliases": [
"no infinite black-hole singularity",
"finite Planck-core black hole",
"capacity-bounded black-hole core"
],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source ontology closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: singularity-resolution proposal; differs because QTT uses A6 finite capacity and A7 closure to deny infinite source density at a completed address.",
"summary": "The QTT denial that an infinite singularity is a legal source object: a black hole may be horizon-bearing, but its completed addresses remain finite-capacity objects.",
"ontology": "The singularity belongs to an overextended smooth-continuum readout. At the source, A6 caps action/energy/curvature per completed address and A7 closes the bundle. A larger black hole must distribute support over many legal cells/bundles rather than compress all reality into one infinite point.",
"math": "rho <= rho_*; K <= K_max ~ 1/ell_tilde^4; no completed address carries infinite energy, action, density, or curvature.",
"book_pages": "black-hole information concept DOI 10.5281/zenodo.20346916; A6 finite-capacity, A2 Einstein-field, and no-infinite-singularity anchors",
"anchor_note": "Black-hole information concept DOI 10.5281/zenodo.20346916; A2 Einstein-field concept DOI 10.5281/zenodo.20763263; QTT Main Book v10.01 finite-capacity and no-infinite-singularity anchors.",
"concept_doi_families": [
{
"title": "Artian's Geometry Denies the Loss of Information Paradox and Rejects the Idea of Hawking Radiation",
"date": "2026-06-23",
"concept_doi": "10.5281/zenodo.20346916"
},
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a7-black-hole-information",
"https://quantumtraction.org/observatory/#obs-a2-einstein-field"
],
"related": [
"A6",
"A7",
"A2 Einstein-field dynamics",
"Black-hole information-loss denial",
"Human Invented Universe"
],
"external_see_also": [
{
"label": "Two Universes: black-hole core",
"href": "https://quantumtraction.org/two-universes/#gravity-71"
},
{
"label": "Two Universes: no infinite singularity",
"href": "https://quantumtraction.org/two-universes/#gravity-72"
}
]
},
{
"id": "term-access-relative-purity",
"term": "Access-relative purity",
"symbol": "",
"aliases": [
"relational purity",
"finite-access purity"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: subsystem purity/mixedness; differs because QTT treats finite visible purity as access-relative while the completed same-universe bundle remains the source object.",
"summary": "The A7U rule that purity claims depend on the declared access window: the completed same-universe bundle may be pure while the visible subsystem is necessarily a marginal.",
"ontology": "QTT does not let a laboratory-visible subsystem pretend it is the whole object. If the access projector leaves co-members of the bundle unresolved, the subsystem carries mixedness relative to that cut. This is not a hidden-reservoir claim; the complement is same-universe modular share.",
"math": "rho_{S|w}^{(O)} = M rho_B M / Tr(M rho_B); eta_{O,S,w}=Tr(rho M_{O,S,w}); strict visible purity is access-relative.",
"book_pages": "A7U source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924; Access Law, A5/A6/A7, Born/projection, and matter-wave source-access anchors",
"anchor_note": "A7U source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924.",
"concept_doi_families": [
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
},
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
},
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a7u-matter-wave-visibility"
],
"related": [
"A7-U",
"Access Law",
"eta",
"M_w",
"Q_bundle"
],
"external_see_also": []
},
{
"id": "term-a7u-g-finite-chamber-gate",
"term": "A7U-G finite chamber gate",
"symbol": "delta_G(Gamma)",
"aliases": [
"A7U-G",
"finite cut-gap theorem",
"chamber-certified A7U-G"
],
"category": "predictions-tests",
"category_label": "Predictions and Blind Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "theorem",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: chamber certificate or decoherence floor model; differs because QTT prints a finite boundary-count cut-gap before data rather than fitting a visibility residual.",
"summary": "The A7U source theorem that a declared finite access chamber prints a source-side cut-gap from its completed boundary-count before visibility data are opened.",
"ontology": "The gate is the discipline that stops A7U from becoming a fitted contrast story. A chamber must print its finite boundary-capacity count N_Gamma first. Only then may the source-side floor be transported through T_vis into a visibility-shape prediction.",
"math": "N_Gamma in N; q_min(Gamma)=2 pi/N_Gamma; epsilon_min(Gamma)=1/N_Gamma; delta_G(Gamma)=2/N_Gamma(1-1/N_Gamma).",
"book_pages": "A7U source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924; A5/A6/A7 boundary-count, access projector, and matter-wave source-access anchors",
"anchor_note": "A7U source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924.",
"concept_doi_families": [
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a7u-matter-wave-visibility"
],
"related": [
"A7-U",
"A7U chamber reference spectrum",
"A7U access floor",
"Matter-wave visibility bridge",
"Pre-registration lock"
],
"external_see_also": [
{
"label": "Derivation Atlas: A7U-G",
"href": "https://quantumtraction.org/derivation-atlas/#node-A7U"
},
{
"label": "Corpus Tree: transport record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20796924"
}
]
},
{
"id": "term-a7u-chamber-reference-spectrum",
"term": "A7U chamber reference spectrum",
"symbol": "omega_{S,w}^{A7U}",
"aliases": [
"omega_A7U",
"A7U reference spectrum"
],
"category": "predictions-tests",
"category_label": "Predictions and Blind Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: apparatus/environment reference state; differs because QTT builds it from A7 closure, A6 capacity, A5 address support, and the declared access projector before data are opened.",
"summary": "The pre-data source spectrum a matter-wave chamber must print before A7U can claim or lose a visibility-floor test.",
"ontology": "The spectrum is where A7 closure, A6 capacity, A5 address support, apparatus access, and environmental controls meet. It must be frozen before central values are opened, otherwise the A7U floor becomes just another fitted contrast loss.",
"math": "omega_{S,w}^{A7U}=R_{S,w}^{A7U}/Tr(R_{S,w}^{A7U}); R_{S,w}^{A7U}=M C_A7(w) K_A6(w) A_A5(w) M.",
"book_pages": "A7U source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924; A7 closure, A6 capacity gate, A5 address support, and access projector anchors",
"anchor_note": "A7U source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924.",
"concept_doi_families": [
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a7u-matter-wave-visibility"
],
"related": [
"A7-U",
"Access-relative purity",
"A7U-G finite chamber gate",
"A7U access floor",
"Matter-wave visibility bridge"
],
"external_see_also": []
},
{
"id": "term-a7u-access-floor",
"term": "A7U access floor",
"symbol": "delta_access",
"aliases": [
"A7U purity floor",
"delta_access"
],
"category": "predictions-tests",
"category_label": "Predictions and Blind Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: decoherence floor or hidden noise term; differs because QTT defines it as a source-access purity bound, not a fitted visibility offset.",
"summary": "The access-relative mixedness floor derived from the A7U chamber reference spectrum, not a fitted visibility offset.",
"ontology": "The floor measures what a declared finite access window cannot purify away. It becomes empirically meaningful only after the source object, apparatus projector, environmental factors, covariance model, and shape statistic are frozen.",
"math": "delta_omega^{A7U}(s)=1-max_{rho in C_omega(s)} Tr(rho^2); delta_G(Gamma)=2/N_Gamma(1-1/N_Gamma); delta_G(Gamma_j) -> T_vis -> F_j^{A7U}. Existing matter-wave rows are consistency-green but floor-observation pending.",
"book_pages": "A7U source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924; access-relative purity and matter-wave visibility bridge anchors",
"anchor_note": "A7U source concept DOI 10.5281/zenodo.20097247; molecular visibility transport concept DOI 10.5281/zenodo.20796924.",
"concept_doi_families": [
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a7u-matter-wave-visibility"
],
"related": [
"A7U chamber reference spectrum",
"Matter-wave visibility bridge",
"No-retune rule",
"Pre-registration lock"
],
"external_see_also": []
},
{
"id": "term-matter-wave-visibility-bridge",
"term": "Matter-wave visibility bridge",
"symbol": "",
"aliases": [
"A7U visibility bridge",
"path-qubit visibility bridge"
],
"category": "predictions-tests",
"category_label": "Predictions and Blind Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: interferometer fringe contrast; differs because QTT maps access-relative purity to a pre-registered visibility-shape test rather than treating a global contrast loss as proof.",
"summary": "The bridge from access-relative purity to interferometer visibility: green for a balanced path-qubit theorem and now closed as a molecular transport framework, while direct floor observation remains pending.",
"ontology": "The bridge is not the claim that every old contrast deficit is A7U. Existing sodium-cluster and C70 matter-wave records constrain ordinary apparatus/decoherence behavior. The current transport status is consistency-green after apparatus-block profiling, but direct floor observation remains pending because a single-block constant residual can be absorbed into A_b.",
"math": "Balanced path qubit: V_path <= sqrt(1-2 delta_path). Molecular transport: delta_G(Gamma_j) -> T_vis -> F_j^{A7U}; V_obs_bj=A_b V_QM/env_bj F_j^{A7U} epsilon_bj; s_obs_bj=Pi_b[log V_obs_bj-log V_QM/env_bj]; s_j^{A7U}=Pi_b[log F_j^{A7U}].",
"book_pages": "A7U molecular visibility transport concept DOI 10.5281/zenodo.20796924; upstream A7U source concept DOI 10.5281/zenodo.20097247; matter-wave source-access and future same-apparatus audit anchors",
"anchor_note": "A7U molecular visibility transport concept DOI 10.5281/zenodo.20796924; upstream source concept DOI 10.5281/zenodo.20097247.",
"concept_doi_families": [
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a7u-matter-wave-visibility"
],
"related": [
"A7-U",
"A7U access floor",
"Access-relative purity",
"Wave equation as shadow"
],
"external_see_also": [
{
"label": "Derivation Atlas: A7U",
"href": "https://quantumtraction.org/derivation-atlas/#node-A7U"
},
{
"label": "Corpus Tree: transport record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20796924"
}
]
},
{
"id": "term-a7u-molecular-visibility-transport",
"term": "A7U Molecular Visibility Transport",
"symbol": "T_vis",
"aliases": [
"molecular visibility transport",
"T_vis transport",
"A7U visibility transport"
],
"category": "predictions-tests",
"category_label": "Predictions and Blind Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "theorem-pending-observation",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The lab-facing A7U transport map that carries the finite chamber source gap into profiled molecular matter-wave visibility rows without treating a contrast loss as the signal.",
"ontology": "The transport object is the access bridge between source closure and an interferometer record. It keeps the source theorem honest by removing apparatus-block mean contrast and asking only whether a pre-declared nonconstant source shape survives the real data.",
"math": "delta_G(Gamma_j) -> T_vis -> F_j^{A7U}; V_obs_bj=A_b V_QM/env_bj F_j^{A7U} epsilon_bj; s_obs_bj=Pi_b[log V_obs_bj-log V_QM/env_bj]; s_j^{A7U}=Pi_b[log F_j^{A7U}].",
"book_pages": "pp. 114, 117-124, 428-438, 1247-1255",
"anchor_note": "A7U molecular visibility transport concept DOI 10.5281/zenodo.20796924; upstream A7U source concept DOI 10.5281/zenodo.20097247.",
"concept_doi_families": [
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a7u-matter-wave-visibility"
],
"related": [
"Matter-wave visibility bridge",
"A7U-G finite chamber gate",
"A7U access floor",
"Access-relative purity",
"No-retune rule"
],
"external_see_also": [
{
"label": "Corpus Tree: transport record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20796924"
},
{
"label": "Derivation Atlas: A7U",
"href": "https://quantumtraction.org/derivation-atlas/#node-A7U"
}
]
},
{
"id": "term-t",
"term": "T",
"symbol": "",
"aliases": [
"Absolute background clock",
"ABC clock",
"Ledger clock"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "standard",
"origin_label": "Textbook / standard support term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: coordinate/cosmic time; differs as the source ledger clock before laboratory projection.",
"summary": "The absolute clock used by the substrate ledger; laboratory time is read from it through lapse and access.",
"ontology": "T is the time coordinate of the source ledger, not a wristwatch. It orders creation/consumption and completed-address updates before a laboratory chooses a finite access window.",
"math": "d tau = N gamma^{-1} dT.",
"book_pages": "pp. 235, 278, 541, 1209",
"anchor_note": "Book v10.01: A1 two-clock structure and ABC/WV clock sections.",
"concept_doi_families": [
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"tau",
"ABC clock",
"T0_ABC",
"I_clk"
],
"external_see_also": []
},
{
"id": "term-tau",
"term": "tau",
"symbol": "tau",
"aliases": [],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "standard",
"origin_label": "Textbook / standard support term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: proper time; differs because it is explicitly an access/readout clock.",
"summary": "Laboratory proper time, the clock read by observers and instruments.",
"ontology": "tau is the finite laboratory clock, not the full source ledger. QTT uses it to explain why laboratory measurements see projections, delays, and access windows rather than source objects directly.",
"math": "d tau / dT <= 1 in fastest-clock normalization.",
"book_pages": "pp. 235, 435, 541, 672, 680",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
},
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"T",
"N_dil",
"I_clk"
],
"external_see_also": []
},
{
"id": "term-abc-clock",
"term": "ABC clock",
"symbol": "",
"aliases": [
"Absolute Background Clock"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "Public-facing name for the T-clock in cosmology/vacuum records.",
"ontology": "The ABC clock is the cosmological/source clock. It is what lets the corpus distinguish the absolute-background age from the lab-projected age.",
"math": "T0^ABC = 15.40 Gyr in the triple-anchor clock record.",
"book_pages": "pp. 540, 1199-1205, 1248",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
},
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"T",
"T0_ABC",
"ABC/WV closure"
],
"external_see_also": []
},
{
"id": "term-i-clk",
"term": "I_clk",
"symbol": "",
"aliases": [
"Half-angle invariant",
"Two-clock projection constant"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: projection factor/overlap amplitude; differs as a fixed two-clock half-angle readout constant.",
"summary": "The clock/readout visibility factor cos(pi/8), arising from the half-angle projection of the canonical pi/4 refoliation.",
"ontology": "I_clk is not a speed limit. It is the laboratory-visible projection of a source clock/dial relation, reused across neutrino, Hubble, CHSH, T-gate, collider, and material-response routes.",
"math": "I_clk = cos(pi/8) ~= 0.9238795325; rho = 2 pi I_clk.",
"book_pages": "pp. 541, 567, 1255",
"anchor_note": "Book v10.01: A1 half-angle discussion; p.134 anchor cited by companion papers.",
"concept_doi_families": [
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
},
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
},
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/03/why-cos-pi-8-is-not-a-speed-limit/"
],
"observatory_links": [],
"related": [
"pi/8",
"pi/4",
"rho",
"Neutrino ratio"
],
"external_see_also": []
},
{
"id": "term-pi-4-refoliation",
"term": "pi/4 refoliation",
"symbol": "theta_can",
"aliases": [],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The canonical two-clock refoliation angle used as the source angle behind the half-angle projection.",
"ontology": "QTT treats the source/lab clock relation as a canonical form, and the laboratory amplitude sees the metaplectic half-angle of that relation.",
"math": "theta_can = pi/4; laboratory amplitude angle = theta_can / 2 = pi/8.",
"book_pages": "pp. 541, 567, 1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
},
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
},
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"I_clk",
"pi/8",
"T",
"tau"
],
"external_see_also": []
},
{
"id": "term-pi-8-projection",
"term": "pi/8 projection",
"symbol": "",
"aliases": [],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The half-angle laboratory projection angle behind cos(pi/8).",
"ontology": "The angle appears when a source dial is read as a laboratory amplitude; it is the reason the same constant can appear as a clock projection, magic-state overlap, and CHSH optimum.",
"math": "cos(pi/8) = sqrt((1 + 1/sqrt(2)) / 2).",
"book_pages": "pp. 541, 567, 1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
},
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
},
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
},
{
"title": "Triple parameter-free number-locks in Quantum Traction Theory: the neutrino ratio, the cosmic baryon invariant, and the Hubble branch ratio",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042421"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/03/why-cos-pi-8-is-not-a-speed-limit/"
],
"observatory_links": [],
"related": [
"I_clk",
"rho",
"CHSH optimum",
"T-gate overlap"
],
"external_see_also": []
},
{
"id": "term-rho",
"term": "rho",
"symbol": "rho",
"aliases": [],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "standard",
"origin_label": "Textbook / standard support term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: dimensionless loop factor; differs as a 2pi modular loop seen through I_clk.",
"summary": "The completed-loop projection size 2pi cos(pi/8).",
"ontology": "rho is the full 2pi modular loop seen through the two-clock half-angle projection. It is a recurring scale in neutrino, fine-structure, and Standard-Model ledger formulas.",
"math": "rho = 2 pi cos(pi/8) = 5.804906...; in the neutrino theorem rho_nu uses this rail and R_nu = rho_nu^2.",
"book_pages": "pp. 541, 594, 637, 1248",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
},
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
},
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#dependency-map",
"https://quantumtraction.org/observatory/#obs-neutrino-ratio"
],
"related": [
"I_clk",
"A7",
"Neutrino ratio"
],
"external_see_also": []
},
{
"id": "term-lambda3",
"term": "Lambda3",
"symbol": "Lambda_3",
"aliases": [
"Λ₃",
"three-flavour QCD scale"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard frame: three-flavour QCD Lambda scale; differs as a shared upstream QCD rail printed across meson, baryon, and glue rows.",
"summary": "The shared three-flavour QCD scale rail used across QTT meson, baryon, and glue-sector readout rows.",
"ontology": "Lambda3 is printed as an upstream rail so related QCD outputs are not double-counted as independent miracles. It belongs in the Lexicon because Observatory rows use it as dependency structure.",
"math": "Lambda_MS^(3),QTT = 334.650962 MeV in the current glueball/QCD workpack row.",
"book_pages": "pp. 1094-1103, 1008-1020, scorecard pp. 126-128",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#dependency-map",
"https://quantumtraction.org/observatory/#obs-qcd-glue"
],
"related": [
"NICK",
"Glueball mass gap",
"Color closure"
],
"external_see_also": []
},
{
"id": "term-j",
"term": "J",
"symbol": "",
"aliases": [
"Real-J rotor",
"Quarter-turn rotor"
],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: imaginary unit or symplectic quarter-turn; differs as a real rotor on an address dial.",
"summary": "The real quarter-turn generator carried by the address dial; standard complex i is its packaged laboratory notation.",
"ontology": "J keeps QTT's phase ontology real: the complex unit is not a magical scalar but the quarter-turn of a two-component dial at an address.",
"math": "J^2 = -I; e^{J theta} = cos theta + J sin theta.",
"book_pages": "pp. 246-250, 381, 435, 1139",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "From Rotor to Wavefunction: How Schrödinger's Cat Is Gone",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20119662"
},
{
"title": "Hamilton's Principle, Feynman's Path Integral, and the Action Quantum h = 2πℏ as Capacity-Rotor Theorems: A Parameter-Free Derivation from QTT Axioms A1--A7U",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20098143"
},
{
"title": "The Folman Phase Spine, Access-Law Timing, Dyadic J-Rotor Holonomy, 4π Periodicity, T 3 Scaling, and the Planck-Mass Superposition Ceiling",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123495"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A4",
"Dial holonomy",
"Real-J phase",
"Schrodinger projection"
],
"external_see_also": []
},
{
"id": "term-dial-holonomy",
"term": "Dial holonomy",
"symbol": "",
"aliases": [],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Closed-path phase transport on the real-J/U(1) address dial.",
"ontology": "Gauge phase, AB phase, AC phase, and spin/clock phase are read as holonomies of the address dial, not as isolated formal decorations.",
"math": "Delta theta[C] = (q/hbar) int_Sigma F + int_Sigma mathcal F.",
"book_pages": "pp. 248-250, 404, 428-429, 462-467",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Modular-holonomy partitions determine the Standard Model charge ledger",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045140"
},
{
"title": "Maxwell's Equations Are the Monadic Address-Transport Theorem in Quantum Traction Theory",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20060666"
},
{
"title": "The Folman Phase Spine, Access-Law Timing, Dyadic J-Rotor Holonomy, 4π Periodicity, T 3 Scaling, and the Planck-Mass Superposition Ceiling",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123495"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A4",
"J",
"Charge ledger",
"Maxwell transport"
],
"external_see_also": []
},
{
"id": "term-4pi-periodicity",
"term": "4pi periodicity",
"symbol": "",
"aliases": [],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "standard",
"origin_label": "Textbook / standard support term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard usage: ordinary textbook or audit notation; QTT keeps it mainly as support language rather than a renamed object.",
"summary": "Spinor/dyadic double-cover periodicity used in the phase-spine and dyadic closure records.",
"ontology": "The same real-dial structure that gives ordinary phase also carries the double-cover behavior behind spinor and dyadic closure.",
"math": "Spinor return requires 4pi while modular bundle closure is 2pi.",
"book_pages": "pp. 246-250, 541, 552, 1248",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Folman Phase Spine, Access-Law Timing, Dyadic J-Rotor Holonomy, 4π Periodicity, T 3 Scaling, and the Planck-Mass Superposition Ceiling",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123495"
},
{
"title": "Fundamental Dyadic Closure and Mirror-Doublet Exclusion in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20053461"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"J",
"Dyadic closure",
"A7"
],
"external_see_also": []
},
{
"id": "term-time-drift",
"term": "Time drift",
"symbol": "",
"aliases": [],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "A locked clock/projection effect used in the cosmology and material-response routes; not a freely fitted drift knob.",
"ontology": "When QTT uses drift factors, the legal version must be printed from a declared source/access rail rather than fitted afterward to repair a result.",
"math": "Example: pi/48 drift angle in clock-sector discussions; F_drift may carry sector labels.",
"book_pages": "pp. 712, 1199-1205",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"F_drift",
"No-retune rule",
"T"
],
"external_see_also": []
},
{
"id": "term-f-drift",
"term": "F_drift",
"symbol": "",
"aliases": [],
"category": "clocks-dials",
"category_label": "Clocks, Dials, and Projection",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "A sector-specific drift/access factor; legal only when the relevant paper prints its source and forbids retuning from the observed comparator.",
"ontology": "F_drift is dangerous if used as a catch-all repair factor. In the current corpus it must be attached to a declared finite access rail and a no-smuggling derivative.",
"math": "K_lab = (cos(pi/8) / F_drift) A_K in the Kerr access factorization; static Kerr cells set F_drift = 1.",
"book_pages": "pp. 280, 541, 672, 680; Kerr access record carries the current audit rail",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Kerr constant",
"No-smuggling",
"Access window"
],
"external_see_also": []
},
{
"id": "term-artian-micro-ruler",
"term": "Artian micro-ruler",
"symbol": "ell_A, ell_tilde",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: microscopic length scale/Planck length; differs because it is the source ruler before any G-calibrated identification.",
"summary": "The primitive QTT length/ruler before or at the empirical bridge to the Planck length.",
"ontology": "QTT must not assume Planck length circularly when deriving G. The Artian ruler is the source micro-ruler; IR matching may identify it with the measured Planck length. The source-only SI endpoint bridge now separates the legal unit rail from the still-amber completed address-capacity numerical certificate.",
"math": "G = ell_tilde^2 c^3 / hbar after the gravity bridge.",
"book_pages": "pp. 56, 193, 238-241, 268; source-only SI endpoint bridge concept DOI 10.5281/zenodo.20936013",
"anchor_note": "Book v10.01: A5-X address-ruler theorem and gravity non-circularity firewall.",
"concept_doi_families": [
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
},
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Source-only SI endpoint bridge",
"Artian tick",
"G",
"Pixellate",
"Q_Sigma"
],
"external_see_also": [
{
"label": "Corpus Tree: source-only SI endpoint",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20936013"
},
{
"label": "Observatory: source-only SI endpoint",
"href": "https://quantumtraction.org/observatory/#obs-source-only-si-endpoint"
}
]
},
{
"id": "term-artian-ruler",
"term": "Artian ruler",
"symbol": "ell_A, ell_tilde",
"aliases": [
"Artian micro-ruler",
"absolute Artian ruler",
"source ruler",
"ell_A",
"ell_tilde"
],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "source ruler / audit boundary",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The QTT source ruler whose laboratory Planck-length reading must not be constructed by smuggling observed G into the source.",
"ontology": "The Artian ruler is the finite source length carried by the address/capacity ledger. It can be read through gravitational, non-gravitational, or source-only SI routes, but those are different audit classes. A non-G anchor is stronger than a G-circular route, while source-only SI closure is stricter still and remains separated from mere agreement with a laboratory constant.",
"math": "Gravity bridge: G_A = ell_A^2 c^3 / hbar. Constructor firewall: partial ell_A / partial G_obs = 0 for non-G/source-only ruler routes.",
"book_pages": "pp. 56, 193, 238-241, 268; non-G Artian ruler metrology concept DOI 10.5281/zenodo.21190193; non-G capacity endpoint concept DOI 10.5281/zenodo.21182051; source-only SI endpoint concept DOI 10.5281/zenodo.20936013",
"anchor_note": "QTT Main Book v10.01, micro-ruler and G non-circularity anchors pp. 56, 193, 238-241, 268; scorecard pp. 126-128.",
"concept_doi_families": [
{
"title": "Metering the Planck Length without big G using Artian Geometery* Anchors: A QTT Keystone Framework for the Artian Ruler, Rank-One Geometry, Non-Gravitational Doors, and Source-Only SI Boundaries",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21190193"
},
{
"title": "Artian Capacity Endpoint Without G: A Keystone-Style QTT Framework for Non-Gravitational E* Constructors, Anchor-Free Inter-Sector Locks, and the Source-Only SI Boundary",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21182051"
},
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-source-only-si-endpoint",
"https://quantumtraction.org/observatory/#obs-newton-g"
],
"related": [
"Artian micro-ruler",
"Artian tick",
"Source-only SI endpoint bridge",
"non-G anchor",
"No-smuggling firewall",
"G",
"Keystone class"
],
"external_see_also": [
{
"label": "Corpus Tree: Planck/E-star/G route",
"href": "https://quantumtraction.org/doi-map/#route-planck-estar-g"
},
{
"label": "Two Universes: source/readout ontology",
"href": "https://quantumtraction.org/two-universes/"
},
{
"label": "Keystone",
"href": "https://quantumtraction.org/keystone/"
}
]
},
{
"id": "term-artian-tick",
"term": "Artian tick",
"symbol": "t_tilde",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The primitive substrate tick, t_tilde = ell_tilde / c.",
"ontology": "The tick is the atomic time-step of address updates and capacity throughput in the source ledger.",
"math": "t_tilde = ell_tilde / c; E_cap t_tilde = hbar.",
"book_pages": "pp. 56, 238, 253, 268",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"T",
"A1",
"E_cap"
],
"external_see_also": []
},
{
"id": "term-source-only-si-endpoint-bridge",
"term": "Source-only SI endpoint bridge",
"symbol": "E_*",
"aliases": [
"Artian source endpoint bridge",
"SI/GeV endpoint bridge",
"source-only endpoint firewall"
],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "source bridge green; numerical certificate amber",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The QTT bridge that reads the universal Artian capacity endpoint into SI/GeV units without letting laboratory constants write the source.",
"ontology": "This is a firewall term. It says the unit rail is legal only when E_* is carried by the A5-X completed-address event, A6 finite capacity, and A7 closure, while G, R_infty, electron mass, electroweak masses, alpha, and CODATA rows remain downstream audits. The bridge is green as a source-only SI/GeV ruler map; v3.0 closes the K2 hyperfine factorization and prints the finite cesium packet target; the fully numerical completed address-capacity certificate for the absolute source ruler remains amber until the 133Cs nuclear/atomic source packet is derived.",
"math": "t_A=ell_A/c; E_* t_A=hbar; E_*=hbar c/ell_A. SI/GeV readouts: E_*[J]=h_SI nu_*[Hz]/(2*pi), E_*[GeV]=h_SI nu_*[Hz]/(2*pi*10^9 e_SI). K2 factorization: N_K2=(alpha_lambda^2/(4*pi))*(m_e^source c^2/E_*)*Phi_Cs^source, with Phi_Cs^target=2.7942472e-6 and nu_*=1.854859e43 Hz at the current audit. Firewall: partial E_*/partial(G_obs,R_infty_obs,m_e_obs,G_F_obs,m_H_obs,m_t_obs,alpha_obs)=0 at fixed ell_A,hbar,c.",
"book_pages": "pp. 9-22, 56, 193, 238-241, 250-268, scorecard pp. 126-128; source-only SI endpoint concept DOI 10.5281/zenodo.20936013",
"anchor_note": "QTT Main Book v10.01, source/readout and no-smuggling pp. 9-22, A5-X/A6/A7 pp. 250-268, micro-ruler and G anchors pp. 56, 193, 238-241, 268, scorecard pp. 126-128.",
"concept_doi_families": [
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "Artian Electron Source-Lab Rydberg Theorem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20800371"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
},
{
"title": "The Artian Lagrangian Framework: A Finite Action Ledger for Quantum Traction Theory, from Completed Address Events to Laboratory Least Action",
"date": "2026-06-12",
"concept_doi": "10.5281/zenodo.20657182"
},
{
"title": "Hamilton's Principle, Feynman's Path Integral, and the Action Quantum h = 2πℏ as Capacity-Rotor Theorems: A Parameter-Free Derivation from QTT Axioms A1--A7U",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20098143"
},
{
"title": "A modular-charge fifth face of the Unified Equilibrium Law in Quantum Traction Theory: E_P = (ℏc/2πℓ_P) Q_P at A7 saturation",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.19975260"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-source-only-si-endpoint",
"https://quantumtraction.org/observatory/#obs-rydberg-source"
],
"related": [
"Artian micro-ruler",
"Artian tick",
"Completed address event",
"A5-X",
"A6",
"A7",
"No-smuggling rule",
"Source/readout split",
"Constructor domain",
"Audit domain",
"Rydberg Source Audit",
"E_cap"
],
"external_see_also": [
{
"label": "Corpus Tree: source-only SI endpoint",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20936013"
},
{
"label": "Derivation Atlas: source-only SI endpoint",
"href": "https://quantumtraction.org/derivation-atlas/#node-SOURCE-ONLY-SI-ENDPOINT"
},
{
"label": "Two Universes: source/readout ontology",
"href": "https://quantumtraction.org/two-universes/"
}
]
},
{
"id": "term-non-g-anchor",
"term": "non-G anchor",
"symbol": "",
"aliases": [
"non-gravitational anchor",
"non-G Artian ruler route",
"no-G anchor"
],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "anchor class / circularity control",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "A dimensional anchor route that excludes observed Newton G from the constructor.",
"ontology": "A non-G anchor is a circularity firewall, not automatically a completed source-only SI certificate. It says the Artian ruler or capacity endpoint is being metered through an independent non-gravitational door, while the stricter source-only endpoint still has its own amber certificate boundary.",
"math": "At fixed source symbols, partial X_ctor / partial G_obs = 0. Non-G anchored != source-only SI closed.",
"book_pages": "pp. 56, 193, 238-241, 268; non-G capacity endpoint concept DOI 10.5281/zenodo.21182051; non-G Artian ruler metrology concept DOI 10.5281/zenodo.21190193; source-only SI endpoint concept DOI 10.5281/zenodo.20936013",
"anchor_note": "QTT Main Book v10.01, source/readout pp. 9-22, micro-ruler pp. 56, 193, 238-241, 268, status scorecard pp. 126-128.",
"concept_doi_families": [
{
"title": "Artian Capacity Endpoint Without G: A Keystone-Style QTT Framework for Non-Gravitational E* Constructors, Anchor-Free Inter-Sector Locks, and the Source-Only SI Boundary",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21182051"
},
{
"title": "Metering the Planck Length without big G using Artian Geometery* Anchors: A QTT Keystone Framework for the Artian Ruler, Rank-One Geometry, Non-Gravitational Doors, and Source-Only SI Boundaries",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21190193"
},
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-source-only-si-endpoint",
"https://quantumtraction.org/observatory/#obs-newton-g"
],
"related": [
"Artian ruler",
"Source-only SI endpoint bridge",
"No-smuggling firewall",
"Keystone class",
"Photon-edge gate",
"Rydberg Source Audit"
],
"external_see_also": [
{
"label": "Corpus Tree: Planck/E-star/G route",
"href": "https://quantumtraction.org/doi-map/#route-planck-estar-g"
},
{
"label": "Numerology route",
"href": "https://quantumtraction.org/numerology/"
}
]
},
{
"id": "term-pixellate",
"term": "Pixellate",
"symbol": "",
"aliases": [
"QTT pixellate substrate",
"modern replacement for Fabrika"
],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The current public/book term for the smallest 3D atom of space-capacity.",
"ontology": "A pixellate is not a naked cube. It is rotationally closed by the pi/6 spherical companion-volume normalization.",
"math": "V_pix = (pi/6) ell_A^3.",
"book_pages": "pp. 57-59, 193, 280",
"anchor_note": "Book v10.01: Definition (Pixellate: the 3D atom of space).",
"concept_doi_families": [
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [
"https://quantumtraction.org/2025/11/26/full-mapping-of-deprecated-terminologies-2019-2021-to-mathematical-developments-in-quantum-traction-theory-qtt-2025/"
],
"observatory_links": [],
"related": [
"Space Quantum",
"Fabrika",
"Artian Geometry"
],
"external_see_also": []
},
{
"id": "term-space-quantum",
"term": "Space Quantum",
"symbol": "V_SQ",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "A completed set of 24 pixellates, the molecule of space-capacity used by the endurance ledger.",
"ontology": "The 24 count is not decoration; it is the rotationally closed space-quantum completion that makes A2's Gauss-law normalization clean.",
"math": "V_SQ = 24 V_pix = 4 pi ell_A^3.",
"book_pages": "pp. 57-59, 193, 238-241",
"anchor_note": "Book v10.01: Definition (Space Quantum: the molecule of space).",
"concept_doi_families": [
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Pixellate",
"A2",
"Endurance current"
],
"external_see_also": []
},
{
"id": "term-q-sigma",
"term": "Q_Sigma",
"symbol": "Q_Sigma",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The complete Artian area quantum used in capacity/area accounting.",
"ontology": "Q_Sigma is the area face of the same finite-cell grammar that gives the space quantum and completed address.",
"math": "Q_Sigma = 8 pi ell_A^2 = 32 S_min.",
"book_pages": "pp. 56, 193, 280",
"anchor_note": "Book v10.01: A5-X address-ruler theorem; fine-structure and capacity notes.",
"concept_doi_families": [
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
},
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"S_min",
"Pixellate",
"Artian Geometry"
],
"external_see_also": []
},
{
"id": "term-s-min",
"term": "S_min",
"symbol": "S_min",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "Minimum area/capacity patch in the Artian address-ruler accounting.",
"ontology": "S_min is the local patch unit beneath Q_Sigma. It keeps surface/area counting finite and tied to the same address-ruler source.",
"math": "S_min = (pi/4) ell_A^2; Q_Sigma / S_min = 32.",
"book_pages": "pp. 56, 193, 280",
"anchor_note": "Book v10.01: A5-X address-ruler theorem.",
"concept_doi_families": [
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
},
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Q_Sigma",
"Capacity",
"A6"
],
"external_see_also": []
},
{
"id": "term-address-w",
"term": "Address w",
"symbol": "",
"aliases": [
"World-cell address",
"Completed-event support"
],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The irreducible operational support label of one completed modular-capacity event.",
"ontology": "w is not a hidden coordinate where magic happens. It is the receipt that a finite modular charge event has closed in the ABC ledger.",
"math": "a(w) = (1/2pi) sum_{w_b prec w} Q_{w_b}^bundle in N.",
"book_pages": "pp. 53-54, 165, 174, 250-253",
"anchor_note": "Book v10.01: A5-X completed address events.",
"concept_doi_families": [
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Completed address event",
"w-co-location",
"Access Law"
],
"external_see_also": []
},
{
"id": "term-completed-address-event",
"term": "Completed address event",
"symbol": "",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "A physical event that has closed its modular charge, action-throughput tick, and finite four-volume.",
"ontology": "This is the object A5-X says can be counted. It replaces vague references to a background lattice with a closure receipt, and in the Lagrangian framework it becomes the event whose finite action spend is summed before any continuum laboratory integral is introduced.",
"math": "Q_E^bundle = 2pi; E_E t_tilde = hbar; Delta V_4 = 4pi ell_tilde^4.",
"book_pages": "pp. 50-54, 250-253, 526",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Artian Lagrangian Framework: A Finite Action Ledger for Quantum Traction Theory, from Completed Address Events to Laboratory Least Action",
"date": "2026-06-12",
"concept_doi": "10.5281/zenodo.20657182"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Address w",
"A5-X",
"A7",
"Finite action ledger"
],
"external_see_also": []
},
{
"id": "term-modular-charge",
"term": "Modular charge",
"symbol": "Q_w",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The dimensionless anchored capacity/bundle charge used to track completion at an address.",
"ontology": "Modular charge is what fills the bundle budget. The visible share may change with access, but the completed same-universe bundle must close.",
"math": "Q_w(rho||omega) = 2pi S(rho||omega); Q_w^bundle = 2pi.",
"book_pages": "pp. 53-54, 263-266, 751",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "A modular-charge fifth face of the Unified Equilibrium Law in Quantum Traction Theory: E_P = (ℏc/2πℓ_P) Q_P at A7 saturation",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.19975260"
},
{
"title": "Entropy Production as Anchored Modular Charge: A Parameter-Free QTT Derivation of the Second Law and Its Area-Law, Page-Bound and Transport Consequences",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045306"
},
{
"title": "The Casimir--Bundle Theorem: Access-Law Boundary Projection, A7 Modular Closure, and the Vacuum--Gravity Schism",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20099862"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A7",
"Q_bundle",
"Entropy anchored modular charge"
],
"external_see_also": []
},
{
"id": "term-q-bundle",
"term": "Q_bundle",
"symbol": "Q_w^bundle",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The fixed 2pi modular budget of a completed address bundle.",
"ontology": "Q_bundle is the closure condition: visible plus hidden same-universe shares complete one modular circle.",
"math": "Q_w^bundle = Q_w^vis + Q_w^hid = 2pi.",
"book_pages": "pp. 263-266, 751",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "A modular-charge fifth face of the Unified Equilibrium Law in Quantum Traction Theory: E_P = (ℏc/2πℓ_P) Q_P at A7 saturation",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.19975260"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
},
{
"title": "From Rotor to Wavefunction: How Schrödinger's Cat Is Gone",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20119662"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A7",
"A7-U",
"Modular charge"
],
"external_see_also": []
},
{
"id": "term-capacity",
"term": "Capacity",
"symbol": "",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "Finite address capacity: the per-address budget for energy, action, power, phase, and admissible readout.",
"ontology": "Capacity is the book's way of preventing unlimited local storage, hidden counterterms, and duplicated mechanisms. Every claimed theorem must say what capacity is being counted.",
"math": "E_cap = hbar c / ell_tilde; |S_w| <= hbar Delta T / t_tilde.",
"book_pages": "pp. 253-262, 304, 753",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A6",
"E_cap",
"No-smuggling"
],
"external_see_also": []
},
{
"id": "term-e-cap",
"term": "E_cap",
"symbol": "E_cap",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The per-address energy ceiling.",
"ontology": "E_cap is the finite energy budget of a completed address tick. It appears as a UV/capacity object, not a fitted high-energy cutoff.",
"math": "E_cap = hbar c / ell_tilde; E_cap t_tilde = hbar.",
"book_pages": "pp. 253-262, 304, 753",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
},
{
"title": "From Rotor to Wavefunction: How Schrödinger's Cat Is Gone",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20119662"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A6",
"Artian tick",
"UEL"
],
"external_see_also": []
},
{
"id": "term-unified-equilibrium-law",
"term": "Unified Equilibrium Law",
"symbol": "UEL",
"aliases": [],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: mass-energy/action-frequency conversion; differs by treating the conversions as faces of one capacity identity.",
"summary": "The QTT capacity-equilibrium identity reading mass, energy, frequency, four-density, and modular bundle capacity as faces of one primitive capacity.",
"ontology": "UEL is the load-bearing conversion spine: it ties Planck capacity and modular charge to energy without treating mass-energy as an isolated postulate.",
"math": "E_P = (hbar c / 2pi ell_P) Q_P, Q_P = 2pi, so E_P = hbar c / ell_P.",
"book_pages": "pp. 23-32, 540, 751, 1247",
"anchor_note": "Book v10.01 and UEL modular-charge fifth-face record.",
"concept_doi_families": [
{
"title": "A modular-charge fifth face of the Unified Equilibrium Law in Quantum Traction Theory: E_P = (ℏc/2πℓ_P) Q_P at A7 saturation",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.19975260"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A7",
"Modular charge",
"E_cap"
],
"external_see_also": []
},
{
"id": "term-uel",
"term": "UEL",
"symbol": "",
"aliases": [
"Unified Equilibrium Law"
],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The searchable acronym for the Unified Equilibrium Law, the QTT capacity-equilibrium identity used throughout the corpus.",
"ontology": "The acronym UEL should be findable on its own because papers and blog cards often cite it compactly. It points to the same capacity identity as the full Unified Equilibrium Law entry.",
"math": "E_P = (hbar c / 2pi ell_P) Q_P; at Q_P = 2pi, E_P = hbar c / ell_P.",
"book_pages": "pp. 23-32, 540, 751, 1247",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "A modular-charge fifth face of the Unified Equilibrium Law in Quantum Traction Theory: E_P = (ℏc/2πℓ_P) Q_P at A7 saturation",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.19975260"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Unified Equilibrium Law",
"A7",
"E_cap"
],
"external_see_also": []
},
{
"id": "term-blop",
"term": "BLOP",
"symbol": "",
"aliases": [
"Blop",
"Law of Creation source event"
],
"category": "substrate-capacity",
"category_label": "Substrate, Address, and Capacity",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: cosmological creation/vacuum-source event; differs by naming the A3 source-side volume-creation ledger object.",
"summary": "The compact public name for the A3 source-side creation event in the QTT volume/vacuum/cosmology ledger.",
"ontology": "BLOP is not an extra particle. It is the named creation-side ledger object paired against endurance sinks in the A3/vacuum branch.",
"math": "V_blop^(b)(T0) ~= 48 pi G M_b T0^2.",
"book_pages": "pp. 241-246, 540, 1199-1205",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A3",
"White-Void",
"ABC/WV closure"
],
"external_see_also": []
},
{
"id": "term-access-law",
"term": "Access Law",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The source/readout separation rule: observation is finite access to a completed address sector, not direct possession of the source object.",
"ontology": "The Access Law is the reason QTT distinguishes source equations from laboratory numbers. A lab result is an access image through declared finite windows, projectors, and efficiencies.",
"math": "[X,P] = J hbar (I - M_w); Delta X Delta P >= (hbar/2)(1 - eta).",
"book_pages": "pp. 9-18, 177, 672, 680",
"anchor_note": "Book v10.01: Access Law genealogy p.9 and Master Equation pp.139-146 cited by companion papers.",
"concept_doi_families": [
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
},
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "The Folman Phase Spine, Access-Law Timing, Dyadic J-Rotor Holonomy, 4π Periodicity, T 3 Scaling, and the Planck-Mass Superposition Ceiling",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123495"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/04/i-asked-an-ai-to-roast-my-paper/"
],
"observatory_links": [],
"related": [
"eta",
"M_w",
"Access window",
"Source/readout split"
],
"external_see_also": []
},
{
"id": "term-eta",
"term": "eta",
"symbol": "eta",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "standard",
"origin_label": "Textbook / standard support term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard usage: ordinary textbook or audit notation; QTT keeps it mainly as support language rather than a renamed object.",
"summary": "Access efficiency in the Access Law; the trace weight of the relevant co-location/access projector.",
"ontology": "eta measures how much of the source/support is actually available to the finite readout. It is not a tunable excuse; it must be experimentally or structurally declared.",
"math": "eta = Tr(rho M_w); Delta X Delta P >= (hbar/2)(1 - eta).",
"book_pages": "pp. 337, 672, 680",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
},
{
"title": "A7U: Distributed Planck Bundles, Access-Relative Purity, and the Matter-Wave Visibility Bridge",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20097247"
},
{
"title": "A7U Molecular Visibility Transport: Closed Source Floor, Access Transport, and Existing-Data Consistency Rows",
"date": "2026-06-22",
"concept_doi": "10.5281/zenodo.20796924"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Access Law",
"M_w",
"w-co-location"
],
"external_see_also": []
},
{
"id": "term-m-w",
"term": "M_w",
"symbol": "",
"aliases": [
"w-co-location projector",
"Access projector"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The projector onto shared or available completed-address support.",
"ontology": "M_w makes access precise: a measurement does not see everything, only the part whose completed-address support lies inside the relevant source/receiver overlap.",
"math": "M_W^{SR} = sum_{w in W(S) cap W(R)} |w><w|.",
"book_pages": "pp. 337, 672, 680",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"eta",
"Address w",
"Access Law"
],
"external_see_also": []
},
{
"id": "term-w-co-location",
"term": "w-co-location",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "Exact shared completed-address support between systems, observers, or records.",
"ontology": "Co-location in w is not ordinary spatial contact and does not allow signalling. It is shared membership in a completed address support sector.",
"math": "E(S1,...,SN) iff intersection_i W(S_i) is nonempty.",
"book_pages": "pp. 83, 144, 435-438",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Address w",
"M_w",
"Entanglement"
],
"external_see_also": []
},
{
"id": "term-access-window",
"term": "Access window",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "A declared finite laboratory/readout map from a QTT source object to an observed number.",
"ontology": "Access windows are the legal way a source theorem becomes an experiment-facing value. They must be printed, finite, and forbidden from absorbing residuals after the fact.",
"math": "X_obs = A_R[X_source], not X_obs = X_source by default.",
"book_pages": "pp. 13-18, 177, 672, 680",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
},
{
"title": "The Casimir--Bundle Theorem: Access-Law Boundary Projection, A7 Modular Closure, and the Vacuum--Gravity Schism",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20099862"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Access Law",
"No-smuggling",
"Finite Access-Window Lemma"
],
"external_see_also": [
{
"label": "Two Universes: how to read source/readout",
"href": "https://quantumtraction.org/two-universes/#how-read"
},
{
"label": "Two Universes: top contrasts",
"href": "https://quantumtraction.org/two-universes/#top-contrasts"
}
]
},
{
"id": "term-source-readout-split",
"term": "Source/readout split",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The distinction between the internal QTT object and the laboratory image through finite access.",
"ontology": "This is the method behind QTT's precision discipline: a formula can be source-closed while an access convention remains pending, or vice versa.",
"math": "X_lab = A_R[X_source].",
"book_pages": "pp. 9-18, 177, 672, 680",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Access window",
"Constructor domain",
"Audit domain"
],
"external_see_also": [
{
"label": "Two Universes: how to read source/readout",
"href": "https://quantumtraction.org/two-universes/#how-read"
},
{
"label": "Two Universes: source/readout geometry",
"href": "https://quantumtraction.org/two-universes/#geometry-source-readout"
},
{
"label": "Duct-taping theoretical physics",
"href": "https://quantumtraction.org/2026/06/02/duct-taping-theoretical-physics/"
}
]
},
{
"id": "term-constructor-domain",
"term": "Constructor domain",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "standard",
"origin_label": "Textbook / standard support term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard usage: ordinary textbook or audit notation; QTT keeps it mainly as support language rather than a renamed object.",
"summary": "The inputs allowed to build a prediction before comparison with observed data.",
"ontology": "The constructor domain is the wall that keeps QTT from using the answer as an ingredient. It should contain axioms, printed constants, independent material inputs, and declared access maps only.",
"math": "Allowed: A1-A7, fixed kernels, independent inputs; forbidden: observed comparator.",
"book_pages": "pp. 22, 599-600, 974, 1072",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Audit domain",
"No-smuggling",
"No-retune rule"
],
"external_see_also": []
},
{
"id": "term-audit-domain",
"term": "Audit domain",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "standard",
"origin_label": "Textbook / standard support term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard usage: ordinary textbook or audit notation; QTT keeps it mainly as support language rather than a renamed object.",
"summary": "The observed/comparator values used only after the prediction is constructed.",
"ontology": "The audit domain is where residuals are measured. It may falsify, support, or expose missing access rails, but it cannot feed back into the constructor.",
"math": "Residual = prediction - comparator; no parameter moves after audit.",
"book_pages": "pp. 118, 599-600, 974, 1072",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "H1 Out-of-Sample Failure Confirmed: MACS J0025 and El Gordo Cluster-Lensing Test",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20095338"
},
{
"title": "Error/Failed report on Equation 601",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19982606"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Audit residual",
"Constructor domain",
"No-retune rule"
],
"external_see_also": []
},
{
"id": "term-no-smuggling-rule",
"term": "No-smuggling rule",
"symbol": "",
"aliases": [
"No-smuggling firewall",
"constructor firewall",
"observed-answer firewall"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The firewall forbidding observed target values from entering the constructor.",
"ontology": "No-smuggling is QTT's self-defense against numerology. If a supposedly derived expression has a hidden derivative with respect to the observed answer, it fails the method. The newer Keystone and Constructor Alphabet papers make this a public audit rule rather than a slogan.",
"math": "partial A / partial observed = 0; for ruler rows, partial X_ctor / partial G_obs = 0 when the route claims non-G status.",
"book_pages": "pp. 198, 303, 599, 974, 1072, 1114",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
},
{
"title": "The Artian Keystone Audit",
"date": "2026-07-02",
"concept_doi": "10.5281/zenodo.21141060"
},
{
"title": "The Constructor Alphabet Under a Null Model: Trials-Corrected Significance for the QTT Corpus",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21182091"
},
{
"title": "Artian Capacity Endpoint Without G: A Keystone-Style QTT Framework for Non-Gravitational E* Constructors, Anchor-Free Inter-Sector Locks, and the Source-Only SI Boundary",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21182051"
},
{
"title": "Metering the Planck Length without big G using Artian Geometery* Anchors: A QTT Keystone Framework for the Artian Ruler, Rank-One Geometry, Non-Gravitational Doors, and Source-Only SI Boundaries",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21190193"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Constructor domain",
"Audit domain",
"No-retune rule",
"No-smuggling firewall",
"Keystone class",
"Constructor Alphabet",
"non-G anchor"
],
"external_see_also": [
{
"label": "Numerology route",
"href": "https://quantumtraction.org/numerology/"
},
{
"label": "Keystone",
"href": "https://quantumtraction.org/keystone/"
}
]
},
{
"id": "term-no-smuggling-firewall",
"term": "No-smuggling firewall",
"symbol": "",
"aliases": [
"constructor firewall",
"no observed-answer smuggling",
"no-G firewall"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "method firewall",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The operational form of the no-smuggling rule: observed targets may audit a QTT constructor, but may not write it.",
"ontology": "The firewall is the difference between a derivation and a numerology exercise. A legal QTT row declares its constructor domain, audit domain, status class, and falsifier before the comparator is allowed to judge the result.",
"math": "D_obs X_src = 0; partial X_ctor / partial y_obs = 0.",
"book_pages": "pp. 198, 303, 599, 974, 1072, 1114; Keystone Audit concept DOI 10.5281/zenodo.21141060; Constructor Alphabet concept DOI 10.5281/zenodo.21182091",
"anchor_note": "QTT Main Book v10.01, no-smuggling/status anchors pp. 198, 303, 599, 974, 1072, 1114.",
"concept_doi_families": [
{
"title": "The Artian Keystone Audit",
"date": "2026-07-02",
"concept_doi": "10.5281/zenodo.21141060"
},
{
"title": "The Constructor Alphabet Under a Null Model: Trials-Corrected Significance for the QTT Corpus",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21182091"
},
{
"title": "Artian Capacity Endpoint Without G: A Keystone-Style QTT Framework for Non-Gravitational E* Constructors, Anchor-Free Inter-Sector Locks, and the Source-Only SI Boundary",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21182051"
},
{
"title": "Metering the Planck Length without big G using Artian Geometery* Anchors: A QTT Keystone Framework for the Artian Ruler, Rank-One Geometry, Non-Gravitational Doors, and Source-Only SI Boundaries",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21190193"
},
{
"title": "qtt-verify: Reproducibility Checks for Selected Quantum Traction Theory Corpus Rows",
"date": "2026-07-02",
"concept_doi": "10.5281/zenodo.21138431"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"No-smuggling rule",
"Constructor domain",
"Audit domain",
"No-retune rule",
"Keystone class",
"Constructor Alphabet",
"non-G anchor"
],
"external_see_also": [
{
"label": "Numerology route",
"href": "https://quantumtraction.org/numerology/"
},
{
"label": "Corpus Tree: verification packets",
"href": "https://quantumtraction.org/doi-map/#cat-verification"
}
]
},
{
"id": "term-keystone-class",
"term": "Keystone class",
"symbol": "",
"aliases": [
"Keystone status class",
"U/A/A-des/R/K class",
"dimensional conditionality class"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "classification ledger",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The status class that says whether a QTT result is unconditional, anchored, anchor-designated, reconstructive, or still Keystone-dependent.",
"ontology": "Keystone classes prevent public rows from mixing pure-number closures, dimensional anchored results, reconstruction rows, and absolute-ruler-dependent claims. They are especially important for the Planck/E-star/G corridor and for HVP, where Version 49 closes a zero-Class-K theorem without claiming final HVP physical height.",
"math": "K:{row objects}->{U,A,A-des,R,K}. Example HVP v49: (N_U,N_A,N_A-des,N_R,N_K)=(7,2,1,1,0).",
"book_pages": "scorecard/status pp. 126-128; source/readout pp. 9-22; Keystone Audit concept DOI 10.5281/zenodo.21141060",
"anchor_note": "QTT Main Book v10.01, scorecard/status pp. 126-128 and source/readout pp. 9-22.",
"concept_doi_families": [
{
"title": "The Artian Keystone Audit",
"date": "2026-07-02",
"concept_doi": "10.5281/zenodo.21141060"
},
{
"title": "Artian's HVP Source-Access Reference Framework",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20732034"
},
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "Artian Capacity Endpoint Without G: A Keystone-Style QTT Framework for Non-Gravitational E* Constructors, Anchor-Free Inter-Sector Locks, and the Source-Only SI Boundary",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21182051"
},
{
"title": "Metering the Planck Length without big G using Artian Geometery* Anchors: A QTT Keystone Framework for the Artian Ruler, Rank-One Geometry, Non-Gravitational Doors, and Source-Only SI Boundaries",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21190193"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access",
"https://quantumtraction.org/observatory/#obs-source-only-si-endpoint"
],
"related": [
"No-smuggling firewall",
"Constructor Alphabet",
"non-G anchor",
"Source-only SI endpoint bridge",
"HVP Source-Access Reference Framework"
],
"external_see_also": [
{
"label": "Keystone",
"href": "https://quantumtraction.org/keystone/"
},
{
"label": "Corpus Tree: Keystone Audit",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-21141060"
}
]
},
{
"id": "term-constructor-alphabet",
"term": "Constructor Alphabet",
"symbol": "",
"aliases": [
"constructor alphabet null model",
"null-model audit alphabet",
"anti-numerology alphabet"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "null-model audit",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The declared finite alphabet used to judge whether a QTT constructor is a constrained source object rather than a post-hoc number hunt.",
"ontology": "The Constructor Alphabet is the anti-numerology workbench. It asks what symbol set, operator grammar, and trial family were available before the audit, then charges the row for the search space instead of pretending a found expression was free.",
"math": "Declare alphabet A_ctor and trial family T before audit; judge significance against the null model, not against an unpriced expression hunt.",
"book_pages": "status/no-smuggling pp. 118, 198, 303, 599, 974, 1072, 1114; Constructor Alphabet null-model concept DOI 10.5281/zenodo.21182091; qtt-verify concept DOI 10.5281/zenodo.21138431",
"anchor_note": "QTT Main Book v10.01, no-smuggling/status anchors pp. 118, 198, 303, 599, 974, 1072, 1114.",
"concept_doi_families": [
{
"title": "The Constructor Alphabet Under a Null Model: Trials-Corrected Significance for the QTT Corpus",
"date": "2026-07-04",
"concept_doi": "10.5281/zenodo.21182091"
},
{
"title": "qtt-verify: Reproducibility Checks for Selected Quantum Traction Theory Corpus Rows",
"date": "2026-07-02",
"concept_doi": "10.5281/zenodo.21138431"
},
{
"title": "The Artian Keystone Audit",
"date": "2026-07-02",
"concept_doi": "10.5281/zenodo.21141060"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"No-smuggling firewall",
"No-retune rule",
"Keystone class",
"Constructor domain",
"Audit domain"
],
"external_see_also": [
{
"label": "Numerology route",
"href": "https://quantumtraction.org/numerology/"
},
{
"label": "Corpus Tree: Constructor Alphabet",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-21182091"
},
{
"label": "Observatory",
"href": "https://quantumtraction.org/observatory/"
}
]
},
{
"id": "term-no-retune-rule",
"term": "No-retune rule",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "Once a prediction or ratio is locked, it is not adjusted after seeing the comparator.",
"ontology": "No-retune is the public-audit discipline behind the DOI corpus: a prediction should be frozen before it is judged.",
"math": "Same kernel, same inputs, no post-audit coefficient movement.",
"book_pages": "pp. 586, 1010-1011, 1022-1023",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
},
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "H1 Out-of-Sample Failure Confirmed: MACS J0025 and El Gordo Cluster-Lensing Test",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20095338"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Pre-registration",
"Audit residual",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-pre-registration-lock",
"term": "Pre-registration lock",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "standard",
"origin_label": "Textbook / standard support term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard usage: ordinary textbook or audit notation; QTT keeps it mainly as support language rather than a renamed object.",
"summary": "The DOI/timestamp act of fixing a prediction before audit.",
"ontology": "Pre-registration makes the corpus auditable: readers can reconstruct when a claim was fixed and whether later data were allowed to move it.",
"math": "Concept DOI gives the stable family; timestamped deposits freeze the audit trail without becoming reader-facing citation targets.",
"book_pages": "pp. 118, 1247-1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian Geometry & Quantum Traction Theory",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.17527179"
},
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "H1 Out-of-Sample Failure Confirmed: MACS J0025 and El Gordo Cluster-Lensing Test",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20095338"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"DOI Map",
"No-retune rule",
"Audit domain"
],
"external_see_also": []
},
{
"id": "term-finite-access-window-lemma",
"term": "Finite Access-Window Lemma",
"symbol": "",
"aliases": [],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The general rule that an observed quantity must be a declared finite window acting on an internal QTT core.",
"ontology": "The lemma prevents direct source-to-observation comparison unless the access window is explicitly the identity.",
"math": "X_obs = X_core + sum Delta_i^R or X_obs = X_core prod_i exp(epsilon_i I_i^R).",
"book_pages": "pp. 13, 177",
"anchor_note": "Book v10.01: Finite Access-Window Lemma entry.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Access Law",
"Access window",
"Source/readout split"
],
"external_see_also": []
},
{
"id": "term-hamiltonian-framework",
"term": "Hamiltonian framework",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The laboratory Hamiltonian as an access image of the deeper substrate ledger.",
"ontology": "QTT does not treat H as a primitive operator floating in Hilbert space. H is the lab-access representation of the source update rule over finite address objects.",
"math": "X^{n+1} = Pi_A7 Pi_A6 exp(Delta T J_h H_h^n / hbar) X^n.",
"book_pages": "pp. 151, 763-767, 832-837",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
},
{
"title": "The Artian Lagrangian Framework: A Finite Action Ledger for Quantum Traction Theory, from Completed Address Events to Laboratory Least Action",
"date": "2026-06-12",
"concept_doi": "10.5281/zenodo.20657182"
},
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/01/another-step-of-the-turtle/"
],
"observatory_links": [],
"related": [
"Artian Lagrangian Framework",
"Computational framework",
"J",
"A6",
"A7"
],
"external_see_also": []
},
{
"id": "term-wave-equation-as-shadow",
"term": "Wave equation as shadow",
"symbol": "",
"aliases": [
"A1 wave shadow",
"d'Alembert shadow",
"source-wave shadow"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: continuum wave equation; differs because d'Alembert propagation is the smooth-access shadow of a finite A1 real-J dial stencil.",
"summary": "The standard continuum wave equation read as the smooth-access image of a finite A1 real-J dial stencil.",
"ontology": "QTT does not start from an already smooth field living in spacetime. The source object is a completed-address dial update; the laboratory d'Alembert equation is what a coarse enough access window sees.",
"math": "[theta_J(n+1,m)-2 theta_J(n,m)+theta_J(n-1,m)]/t_tilde^2 = (c_QTT^2/ell_tilde^2) Delta_ell theta_J(n,m) -> partial_T^2 theta_J - c_QTT^2 nabla^2 theta_J = 0.",
"book_pages": "A1/A4/A5/A6/A7 source-wave anchors and compact corpus ledger; concept DOI 10.5281/zenodo.20723081",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Wave Equation as a Shadow: The Discrete Real-J Dial Ledger, Its Exact Stencil Dispersion, and the Linear-Free Lorentz-Violation Falsifier",
"date": "2026-06-16",
"concept_doi": "10.5281/zenodo.20723081"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-wave-shadow-linear-dispersion"
],
"related": [
"Discrete real-J dial ledger",
"Stencil dispersion",
"Linear-free Lorentz-violation falsifier",
"Hamiltonian framework",
"A1",
"J"
],
"external_see_also": []
},
{
"id": "term-discrete-real-j-dial-ledger",
"term": "Discrete real-J dial ledger",
"symbol": "",
"aliases": [
"real-J source stencil",
"A1 dial update",
"J-dial wave ledger"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: lattice wave update; differs because the update is a source clock/address rule, not a numerical discretization of an already-continuum field.",
"summary": "The finite address-tick update whose smooth access limit becomes wave propagation.",
"ontology": "The ledger is a source-law object: it counts legal neighbouring address transfers in the real-J dial before a continuum wave field is drawn by the laboratory reader.",
"math": "c_QTT = ell_tilde/t_tilde; the A1 second-difference update is the source law, not a numerical approximation added after the fact.",
"book_pages": "A1/A4/A5/A6/A7 source-wave anchors; concept DOI 10.5281/zenodo.20723081",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Wave Equation as a Shadow: The Discrete Real-J Dial Ledger, Its Exact Stencil Dispersion, and the Linear-Free Lorentz-Violation Falsifier",
"date": "2026-06-16",
"concept_doi": "10.5281/zenodo.20723081"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-wave-shadow-linear-dispersion"
],
"related": [
"Wave equation as shadow",
"Stencil dispersion",
"J",
"A1",
"A5-X"
],
"external_see_also": []
},
{
"id": "term-stencil-dispersion",
"term": "Stencil dispersion",
"symbol": "",
"aliases": [
"sine-squared stencil dispersion",
"A1 dispersion"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: lattice dispersion relation; differs because it is the exact source dispersion that forbids a linear vacuum-dispersion term by parity.",
"summary": "The exact dispersion relation of the A1 wave-shadow stencil.",
"ontology": "The finite source stencil does not merely approximate continuum propagation. Its exact parity structure says which Lorentz-violation channels are legal and which are not.",
"math": "sin^2(omega t_tilde/2) = (c_QTT t_tilde/ell_tilde)^2 sum_a sin^2(k_a ell_tilde/2).",
"book_pages": "A1 source-wave anchors and wave-shadow record; concept DOI 10.5281/zenodo.20723081",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Wave Equation as a Shadow: The Discrete Real-J Dial Ledger, Its Exact Stencil Dispersion, and the Linear-Free Lorentz-Violation Falsifier",
"date": "2026-06-16",
"concept_doi": "10.5281/zenodo.20723081"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-wave-shadow-linear-dispersion"
],
"related": [
"Wave equation as shadow",
"Linear-free Lorentz-violation falsifier",
"Discrete real-J dial ledger"
],
"external_see_also": []
},
{
"id": "term-linear-free-lorentz-violation-falsifier",
"term": "Linear-free Lorentz-violation falsifier",
"symbol": "",
"aliases": [
"linear-free dispersion falsifier",
"linear Planck-dispersion firewall"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: Planck-scale Lorentz-violation test; differs by predicting the absence of a robust linear vacuum-dispersion channel from the source stencil.",
"summary": "The falsifier that a robust source-clean linear vacuum-dispersion term would break the A1 stencil theorem.",
"ontology": "The wave-shadow paper does not claim an observed Lorentz-violation signal. It claims the opposite structural constraint: the legal source stencil is even, so a linear channel cannot be inserted without changing the source law.",
"math": "Exact stencil is even in k and omega; leading formal correction is quadratic, while a linear-in-energy vacuum-speed term is forbidden.",
"book_pages": "A1 source-wave anchors and wave-shadow record; concept DOI 10.5281/zenodo.20723081",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Wave Equation as a Shadow: The Discrete Real-J Dial Ledger, Its Exact Stencil Dispersion, and the Linear-Free Lorentz-Violation Falsifier",
"date": "2026-06-16",
"concept_doi": "10.5281/zenodo.20723081"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-wave-shadow-linear-dispersion"
],
"related": [
"Wave equation as shadow",
"Stencil dispersion",
"No-smuggling rule",
"Audit domain"
],
"external_see_also": []
},
{
"id": "term-artian-lagrangian-framework",
"term": "Artian Lagrangian Framework",
"symbol": "",
"aliases": [
"QTT Lagrangian framework",
"Source Lagrangian",
"Access-projected Lagrangian"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The action-language companion to the Hamiltonian framework: a finite source-action ledger over completed A5-X events whose laboratory Lagrangian is an Access-Law image.",
"ontology": "The source object is not a smooth continuum action assumed first. A history is legal only when its completed address events close the A7 bundle, obey the A6 action spend, carry A5-X four-volume support, and survive the declared access window. The laboratory least-action integral is the smoothed readout of that finite source ledger.",
"math": "S_src[Gamma] = sum_{E in C_T(Gamma)} L_src,E(q_E,D_T q_E,J_E,Q_bundle,E) Delta T_E\n\nC_T = {E: Q_bundle,E = 2pi, E_E t_tilde = hbar, Delta V_4,E = 4pi ell_tilde^4}\n\nS_lab[phi;W] = A_W[S_src[Gamma]] = int_W d^4x sqrt(-g) L_lab(phi,nabla phi,x).",
"book_pages": "Lagrangian framework v2.1: pp. 481-596, 691-770, 816-901, 1749-1786; Book v10.01 anchors pp. 42-61, 100-106, 425-427, 809-811",
"anchor_note": "Lagrangian framework v2.1 and Book v10.01 anchors: source/access ontology pp. 42-61; A1-A7 pp. 191-217; hbar from A5-X pp. 809-811; least action pp. 425-427.",
"concept_doi_families": [
{
"title": "The Artian Lagrangian Framework: A Finite Action Ledger for Quantum Traction Theory, from Completed Address Events to Laboratory Least Action",
"date": "2026-06-12",
"concept_doi": "10.5281/zenodo.20657182"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
},
{
"title": "Hamilton's Principle, Feynman's Path Integral, and the Action Quantum h = 2πℏ as Capacity-Rotor Theorems: A Parameter-Free Derivation from QTT Axioms A1--A7U",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20098143"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/01/another-step-of-the-turtle/"
],
"observatory_links": [],
"related": [
"Finite action ledger",
"Completed address event",
"Hamiltonian framework",
"Least action",
"Access Law",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-finite-action-ledger",
"term": "Finite action ledger",
"symbol": "",
"aliases": [
"Source action ledger",
"completed-event action sum"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The finite sum of action spends over legal completed events before any continuum laboratory integral is introduced.",
"ontology": "The finite action ledger is the receipt layer: each completed event has an action cost payable under A6 and bundle closure under A7. Continuum field theory remains useful, but only after this source ledger is read through a finite access window.",
"math": "S_src[Gamma;T0,T1] = sum_{E in C_T(Gamma;T0,T1)} Delta S_E,\nDelta S_E^tick = E_E t_tilde = hbar,\nD_T q_E = (q_{E+} - q_E)/(T_{E+} - T_E).",
"book_pages": "Lagrangian framework v2.1: pp. 481-596 and compact master equation pp. 1749-1786; Book v10.01 anchors pp. 42-61, 100-106, 809-811",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Artian Lagrangian Framework: A Finite Action Ledger for Quantum Traction Theory, from Completed Address Events to Laboratory Least Action",
"date": "2026-06-12",
"concept_doi": "10.5281/zenodo.20657182"
},
{
"title": "Hamilton's Principle, Feynman's Path Integral, and the Action Quantum h = 2πℏ as Capacity-Rotor Theorems: A Parameter-Free Derivation from QTT Axioms A1--A7U",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20098143"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Artian Lagrangian Framework",
"Completed address event",
"A6",
"A7",
"Least action"
],
"external_see_also": []
},
{
"id": "term-computational-framework-v1-0",
"term": "Computational framework v1.0",
"symbol": "Q_h",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The DOI-minted computational contract for QTT problem tuples, update operators, projections, capacity constraints, and audit protocols.",
"ontology": "The computational framework translates book ontology into a reproducible object: configuration, address set, clock step, Hamiltonian, constraints, projections, and observations.",
"math": "Q_h = (C_h, W_h, Delta T, ell_tilde, J, H_h, A_h, B_h, C_h, P_lab, O_h).",
"book_pages": "pp. 1247-1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Quantum Traction Theory - Computational Framework (V 1.0)",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123491"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Hamiltonian framework",
"A6",
"A7"
],
"external_see_also": []
},
{
"id": "term-least-action",
"term": "Least action",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Hamilton's principle as a capacity-rotor theorem rather than an independent variational postulate.",
"ontology": "QTT reads stationary action as the legal closed phase route for a finite capacity rotor. In the Lagrangian framework this is sharpened into stationarity of the finite source-action ledger before the laboratory integral appears.",
"math": "d theta = dS_tot / hbar; h = 2pi hbar; delta S_tot = 0.\n\nLagrangian form: delta S_src = 0 -> finite QTT Euler-Lagrange equations ->_access delta S_lab = 0.",
"book_pages": "pp. 388, 393, 433-435, 1249",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Artian Lagrangian Framework: A Finite Action Ledger for Quantum Traction Theory, from Completed Address Events to Laboratory Least Action",
"date": "2026-06-12",
"concept_doi": "10.5281/zenodo.20657182"
},
{
"title": "Hamilton's Principle, Feynman's Path Integral, and the Action Quantum h = 2πℏ as Capacity-Rotor Theorems: A Parameter-Free Derivation from QTT Axioms A1--A7U",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20098143"
},
{
"title": "The Artian Hamiltonian Framework for QTT",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20484906"
}
],
"reader_links": [
"https://quantumtraction.org/2025/11/13/how-quantum-traction-theory-derives-the-principle-of-least-action/"
],
"observatory_links": [],
"related": [
"Artian Lagrangian Framework",
"Finite action ledger",
"Feynman path integral",
"J",
"A6"
],
"external_see_also": []
},
{
"id": "term-feynman-path-integral",
"term": "Feynman path integral",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The complex path integral as the laboratory shadow of real-J rotor phase and finite A6 path admissibility.",
"ontology": "QTT keeps the path integral but changes its ontological reading: paths carry real rotor phase, and A6 filters inadmissible over-capacity histories.",
"math": "K_J(b,a) = int D[x] D_A6[x] R_J(S[x]/hbar) -> int D[x] exp(iS[x]/hbar).",
"book_pages": "pp. 433-435, 1249",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Hamilton's Principle, Feynman's Path Integral, and the Action Quantum h = 2πℏ as Capacity-Rotor Theorems: A Parameter-Free Derivation from QTT Axioms A1--A7U",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20098143"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Least action",
"Real-J phase",
"Capacity"
],
"external_see_also": []
},
{
"id": "term-schrodinger-projection",
"term": "Schrodinger projection",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The standard Schrodinger wavefunction as the laboratory projection of a real-J address ledger.",
"ontology": "The wavefunction is not the source substrate itself. It is the lab projection obtained by summing real-J source densities over completed address support.",
"math": "J hbar partial_T rho = H_J rho -> i hbar partial_tau Psi = H Psi.",
"book_pages": "pp. 381, 435-438, 1247",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "From Rotor to Wavefunction: How Schrödinger's Cat Is Gone",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20119662"
},
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"J",
"Wavefunction projection",
"Born rule"
],
"external_see_also": []
},
{
"id": "term-wavefunction-projection",
"term": "Wavefunction projection",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The lab wavefunction built by summing source amplitudes over common completed-address events.",
"ontology": "The wavefunction is a projection over completed w-support, so measurement is access to a recorded sector rather than a metaphysical collapse of reality.",
"math": "Psi_N = N_N^{-1/2} sum_{w in A_T^comp} rho_N((x1,w);...;(xN,w)|T).",
"book_pages": "pp. 435-438, 1247",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "From Rotor to Wavefunction: How Schrödinger's Cat Is Gone",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20119662"
},
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Address w",
"Born rule",
"Measurement as access"
],
"external_see_also": []
},
{
"id": "term-born-rule",
"term": "Born rule",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The square of the real-J ledger norm forced as the probability measure.",
"ontology": "QTT reads probability as the measure on finite address ledger weight. The square is not added by interpretive fiat; it follows from the J-norm ledger.",
"math": "p(alpha|M) = sum_w ||rho(w)||_J^2 <psi_w|Pi_alpha psi_w>_J.",
"book_pages": "pp. 268, 435-438, 1247",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Wavefunction projection",
"J",
"Measurement as access"
],
"external_see_also": []
},
{
"id": "term-measurement-as-access",
"term": "Measurement as access",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Observation is finite access to a completed address sector; measurement adds pointer and redundant record.",
"ontology": "The measurement problem dissolves in QTT by separating source object, access event, pointer, and record rather than treating collapse as a new dynamical primitive.",
"math": "Observation = a(S,T) = a(O,T); collapse = conditional access to recorded address sector.",
"book_pages": "pp. 138, 435-438, 672, 680",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Observation as Access: A Quantum Traction Theory Dissolution of the Measurement Problem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20114403"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Access Law",
"Born rule",
"Wavefunction projection"
],
"external_see_also": []
},
{
"id": "term-planck-mass-superselection",
"term": "Planck-mass superselection",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "A local coherence ceiling forbidding coherent visible mass above one Planck bundle per completed address cell.",
"ontology": "Macroscopic superpositions are not banned globally; QTT's claim is local and capacity-based: no one address can carry a coherent visible excitation above its bundle budget.",
"math": "M_coh <= m_P = sqrt(hbar c / G).",
"book_pages": "pp. 263, 534, 539",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "From Rotor to Wavefunction: How Schrödinger's Cat Is Gone",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20119662"
},
{
"title": "The Folman Phase Spine, Access-Law Timing, Dyadic J-Rotor Holonomy, 4π Periodicity, T 3 Scaling, and the Planck-Mass Superposition Ceiling",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123495"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A7",
"A6",
"Q_bundle"
],
"external_see_also": []
},
{
"id": "term-g",
"term": "G",
"symbol": "",
"aliases": [
"Newton's constant",
"Artian G"
],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "derived/removed",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "In QTT, G is not primitive once the Artian micro-ruler and endurance ledger are admitted; the current paper tracks this through a six-face Artian G ledger.",
"ontology": "The claim is not that a number was fitted to Planck length. It is that gravitational coupling is the continuum bridge of the Artian ruler, tick, and endurance capacity ledger. The current six-face paper then checks whether unrelated sector faces read the same capacity endpoint without observed G or observed alpha writing the source equations. The dimensional anchor is kept honest: alpha alone does not determine a dimensionful G.",
"math": "G_A = ell_A^2 c^3 / hbar = hbar c^5/E_*^2; G_A^(gamma H)=6.674301412456e-11 m^3 kg^-1 s^-2, z_G=+0.009416 sigma; G_mu_nu + Lambda_A3 g_mu_nu = (8*pi*G_A/c^4)T_mu_nu^A2.",
"book_pages": "pp. 56, 238-241, 268, 1248",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
},
{
"title": "A Parameter-Free Einstein–Hilbert Coefficient from a Sink-Current Endurance Ledger",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042843"
}
],
"reader_links": [
"https://quantumtraction.org/2025/11/27/solving-the-three-body-with-law-of-endurance/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-g-branch"
],
"related": [
"A2",
"Endurance current",
"A2 Einstein-field dynamics",
"Artian micro-ruler",
"Photon-Edge Gate",
"No-smuggling rule"
],
"external_see_also": [
{
"label": "Derivation Atlas: G coefficient",
"href": "https://quantumtraction.org/derivation-atlas/#node-GCOEFF"
},
{
"label": "Corpus Tree: current Newton/G record",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20057430"
}
]
},
{
"id": "term-endurance-current",
"term": "Endurance current",
"symbol": "J_end",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The speed-like volumetric flux of space-quantum renewal around mass.",
"ontology": "Endurance current is the substrate flux whose shell-averaged continuum shadow becomes gravitational acceleration. In the current A2 field theorem it is the bridge from sink counting to Newton-Poisson normalization and then to the IR metric field equation.",
"math": "div J_end = - (V_SQ / (m_tilde t_tilde)) rho; g = (c / ell_tilde) J_end; lambda=(M/m_tilde)(Delta T/t_tilde)A/(4*pi*r^2).",
"book_pages": "pp. 198-208, 238-241, 268",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A2 Endurance to Einstein-Field Dynamics",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20763263"
},
{
"title": "Newton's Constant Is Not Primitive in Quantum Traction Theory: Artian Angular Capacity, Universal Endurance Ceilings, and G = ℓ_A² c³ / ℏ Without Planck-Length Circularity",
"date": "2026-06-20",
"concept_doi": "10.5281/zenodo.20057430"
},
{
"title": "A Parameter-Free Einstein–Hilbert Coefficient from a Sink-Current Endurance Ledger",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042843"
},
{
"title": "Newton's Second Law as a Three-Way Capacity-Counting Theorem: A QTT Derivation of Inertia, Gravitation, and Reality-Work from One Substrate Count",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20059779"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A2",
"G",
"A2 Einstein-field dynamics",
"Finite-address correction map",
"Inertia theorem"
],
"external_see_also": []
},
{
"id": "term-inertia-theorem",
"term": "Inertia theorem",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Newton's second law read as a capacity-counting theorem over active substrate bundles.",
"ontology": "Inertia is not an unrelated primitive; it is the reality-work cost of changing the address ledger of a mass bundle.",
"math": "F = N_b m_* a; M = N_b m_*.",
"book_pages": "pp. 238-241, 268, 1248",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Newton's Second Law as a Three-Way Capacity-Counting Theorem: A QTT Derivation of Inertia, Gravitation, and Reality-Work from One Substrate Count",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20059779"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A2",
"Reality-work",
"G"
],
"external_see_also": []
},
{
"id": "term-navier-stokes-shadow",
"term": "Navier-Stokes shadow",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Classical fluid equations as the hydrodynamic shadow of a capacity-bounded address ledger.",
"ontology": "The continuum fluid law is treated as a coarse-grained readout of finite tick/address updates rather than a primitive continuous ontology.",
"math": "partial_T rho + div(rho v) = 0; rho D_T v = div sigma + rho g.",
"book_pages": "pp. 535, 1248",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "From Tick to Turbulence: A Derivation from Quantized Traction — Navier–Stokes as the Hydrodynamic Shadow of a Capacity-Bounded Address Ledger",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20122608"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Capacity",
"A2",
"Continuum shadow"
],
"external_see_also": []
},
{
"id": "term-maxwell-transport",
"term": "Maxwell transport",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Maxwell's equations as the monadic address-transport theorem of the QTT charge/dial ledger.",
"ontology": "Electromagnetism is read as address-dial holonomy and local transport, with the usual field equations arising as the laboratory continuum form.",
"math": "standard four Maxwell equations from address transport.",
"book_pages": "pp. 248-250, 1248, 1253",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Maxwell's Equations Are the Monadic Address-Transport Theorem in Quantum Traction Theory",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20060666"
},
{
"title": "Modular-holonomy partitions determine the Standard Model charge ledger",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045140"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A4",
"Charge ledger",
"Dial holonomy"
],
"external_see_also": []
},
{
"id": "term-casimir-bundle-theorem",
"term": "Casimir-bundle theorem",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Casimir energy as an access-law boundary projection and A7 bundle reshuffling.",
"ontology": "The plates do not create particles from nothing; they change the finite access ledger of modes and expose a boundary difference.",
"math": "E_Cas / A = - pi^2 hbar c / (720 L^3).",
"book_pages": "pp. 535, 1248, 1253",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Casimir--Bundle Theorem: Access-Law Boundary Projection, A7 Modular Closure, and the Vacuum--Gravity Schism",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20099862"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A7 reshuffling",
"Access window",
"Vacuum capacity"
],
"external_see_also": []
},
{
"id": "term-entropy-anchored-modular-charge",
"term": "Entropy anchored modular charge",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Second-law and entropy production read as anchored modular charge accounting.",
"ontology": "Entropy is not primitive disorder; it is finite address-counted modular charge production under declared access and transport conditions.",
"math": "",
"book_pages": "pp. 751",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Entropy Production as Anchored Modular Charge: A Parameter-Free QTT Derivation of the Second Law and Its Area-Law, Page-Bound and Transport Consequences",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045306"
}
],
"reader_links": [
"https://quantumtraction.org/2025/11/22/entropy-the-reality-dimension-how-qtt-rewrites-the-second-law/"
],
"observatory_links": [],
"related": [
"Modular charge",
"A7",
"UEL"
],
"external_see_also": []
},
{
"id": "term-capacity-qed-kernel",
"term": "Capacity/QED kernel",
"symbol": "",
"aliases": [],
"category": "core-equations",
"category_label": "Core Equations and Theorems",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The single-kernel capacity layer used in precision QED, noise, heat, spectroscopy, and ultraviolet audits.",
"ontology": "QTT tries to replace independent regulator/counterterm choices with one finite capacity kernel whose use is fixed before audit. The photon-edge gate is the upstream alpha source object and the electron/Rydberg theorem supplies the source electron packet; QED windows then test no-retune reuse rather than construct alpha, K_lambda, or m_e^source. Precision QED v3.03 keeps the old five-window table as prototype evidence, restores the detailed technical scaffolding, and marks the full frozen-source covariance suite pending.",
"math": "int_0^infty K(omega)/(pi omega) d omega = alpha.",
"book_pages": "pp. 304, 540, 782, 1037-1045",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
},
{
"title": "The Photon-Edge Gate: Uniqueness and Minimality of the Residual Five-Rail Complex for the Fine-Structure Constant",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20628735"
},
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Photon-edge gate",
"Fine-structure constant",
"A6",
"No-smuggling"
],
"external_see_also": []
},
{
"id": "term-photon-edge-gate",
"term": "Photon-edge gate",
"symbol": "lambda_gamma",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: fine-structure/QED coupling normalization; differs by treating alpha as a finite residual source-edge theorem before CODATA or QED-window audit.",
"summary": "The residual five-rail source-edge theorem for the fine-structure constant.",
"ontology": "The photon-edge gate is not another decimal expression for alpha. It says the laboratory electromagnetic coupling is the readout of a finite source object: photon house 8, neutral projected half-loop rho/2, and a residual five-rail edge whose denominators and signs are fixed before audit.",
"math": "alpha_QTT^-1 = 4*pi*(8 + rho/2 + lambda_gamma), lambda_gamma = 0.00252517226324577, alpha_QTT^-1 = 137.035999165998.",
"book_pages": "pp. 304, 1037-1045; photon-edge theorem concept DOI 10.5281/zenodo.20628735 carries the current source-edge route",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Photon-Edge Gate: Uniqueness and Minimality of the Residual Five-Rail Complex for the Fine-Structure Constant",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20628735"
},
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-alpha-door"
],
"related": [
"Fine-structure constant",
"Capacity/QED kernel",
"No-smuggling rule",
"rho"
],
"external_see_also": []
},
{
"id": "term-rydberg-source-audit",
"term": "Rydberg Source Audit",
"symbol": "R_infty^QTT",
"aliases": [
"electron source-lab Rydberg theorem",
"Rydberg corridor",
"Rydberg source equation",
"electron/Rydberg source-lab audit"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source/lab corridor green",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The QTT precision-metrology audit in which the electron source/lab access rail is fixed first and the Rydberg constant, atomic units, and QED windows are opened only afterward.",
"ontology": "This term names the firewall, not just the number. The Rydberg row is a laboratory corridor for a frozen source/lab electron rail: the rank-anatomy denominator, gamma-W micro-access bridge, source electron mass, scalar-lock provenance gate, and photon-edge alpha are printed before the CODATA Rydberg comparison. Version 5.01 also propagates the same source packet into atomic units and freezes the QED no-retune window suite. Observed Rydberg, hydrogen, Lamb/HFS, a_e, muonium, or positronium rows can stress or falsify the rail, but they are not allowed to tune it.",
"math": "R_e^ctor=256*384*198*97=1,888,026,624\nI_e^src/lab=1/(rho R_e)+1/(64 R_e)=9.951823065003947e-11\nm_e^source=0.510998950610811 MeV\nR_infty^QTT=alpha_lambda^2 m_e^source c/(2h)=10,973,731.568156838 m^-1; z_R=-0.0135 sigma.\nAtomic-unit packet = F(alpha_lambda,m_e^source,h,c).",
"book_pages": "pp. 1037-1045, 1094-1103, electron micro-rail pp. 1192-1198, scorecard pp. 126-128; electron/Rydberg concept DOI 10.5281/zenodo.20800371; source-only SI endpoint concept DOI 10.5281/zenodo.20936013",
"anchor_note": "QTT Main Book v10.01, Koide/access pp. 1037-1045 and 1094-1103; electron micro-rail pp. 1192-1198; scorecard pp. 126-128.",
"concept_doi_families": [
{
"title": "Artian Electron Source-Lab Rydberg Theorem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20800371"
},
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "The Photon-Edge Gate: Uniqueness and Minimality of the Residual Five-Rail Complex for the Fine-Structure Constant",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20628735"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-rydberg-source"
],
"related": [
"Source-only SI endpoint bridge",
"gamma-W micro-access rail",
"Atomic-unit source propagation",
"QED no-retune window suite",
"Charged-Lepton Family-Rank Constructor Theorem",
"Photon-edge gate",
"Fine-structure constant",
"Capacity/QED kernel",
"No-smuggling rule",
"Source/readout split"
],
"external_see_also": [
{
"label": "Corpus Tree: Rydberg family",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20800371"
},
{
"label": "Corpus Tree: source-only SI endpoint",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20936013"
},
{
"label": "Observatory: source-only SI endpoint",
"href": "https://quantumtraction.org/observatory/#obs-source-only-si-endpoint"
},
{
"label": "Two Universes: source/readout shadows",
"href": "https://quantumtraction.org/two-universes/"
}
]
},
{
"id": "term-gamma-w-micro-access-rail",
"term": "gamma-W micro-access rail",
"symbol": "I_e^{gamma W}",
"aliases": [
"gamma W rail",
"electron gamma-W rail",
"electron gamma-W source/lab bridge",
"gammaW micro-access rail"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The finite electron source/lab bridge used by the Rydberg theorem: a photon-access rail crossed with a W-address covariance rail.",
"ontology": "The gamma-W rail is not the Lorentz gamma factor and not a Dirac gamma matrix. It is a named QTT access path: the electron source row reaches the laboratory Rydberg readout through a finite rank rail plus a legal covariance door whose denominator is 64=2_cov*32_Sigma. Only the rank rail and gamma-W covariance rail carry active source/lab metric weight in this theorem.",
"math": "64=2_cov*32_Sigma\nI_e^{src/lab,QTT}=1/(rho R_e^ctor)+1/(64 R_e^ctor)\nD_e^{gamma W} F_e = (rho R_e)^(-1/2) r_rank + (64 R_e)^(-1/2) r_gammaW.",
"book_pages": "electron micro-rail pp. 1192-1198; charged-lepton family-rank pp. 1037-1045 and 1094-1103; electron/Rydberg concept DOI 10.5281/zenodo.20800371",
"anchor_note": "QTT Main Book v10.01, electron micro-rail pp. 1192-1198; charged-lepton family-rank pp. 1037-1045 and 1094-1103.",
"concept_doi_families": [
{
"title": "Artian Electron Source-Lab Rydberg Theorem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20800371"
},
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "The Photon-Edge Gate: Uniqueness and Minimality of the Residual Five-Rail Complex for the Fine-Structure Constant",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20628735"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-rydberg-source"
],
"related": [
"Rydberg Source Audit",
"Source-only SI endpoint bridge",
"Atomic-unit source propagation",
"QED no-retune window suite",
"Photon-edge gate",
"Charged-Lepton Family-Rank Constructor Theorem",
"rho",
"Source/readout split",
"No-smuggling rule"
],
"external_see_also": [
{
"label": "Corpus Tree: Rydberg family",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20800371"
},
{
"label": "Observatory: Rydberg source audit",
"href": "https://quantumtraction.org/observatory/#obs-rydberg-source"
}
]
},
{
"id": "term-atomic-unit-source-propagation",
"term": "Atomic-unit source propagation",
"symbol": "F(alpha_lambda,m_e^source,h,c)",
"aliases": [
"atomic-unit source packet",
"QTT atomic-unit packet",
"source-propagated atomic units"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The V5.01 electron/Rydberg closure that treats the atomic-unit rows as one correlated source packet rather than independent constants.",
"ontology": "Once alpha_lambda and the source electron are frozen, QTT reads the Compton wavelengths, Bohr radius, Hartree, Rydberg energy, Rydberg constant, clock, velocity, momentum, classical electron size, and atomic time as one propagated packet through h and c. No observed hydrogen line, CODATA-adjusted electron mass, anomalous magnetic moment, Lamb shift, hyperfine splitting, proton radius, or isotope-shift row is allowed to write this packet.",
"math": "lambda_C, lambda_Cbar, a_0, E_h, E_R, R_infty, nu_C, nu_R, v_0, p_0, r_e, t_atom = F(alpha_lambda,m_e^source,h,c).",
"book_pages": "electron/Rydberg source theorem pp. 27-29 and 35-37; scorecard pp. 126-128; electron/Rydberg concept DOI 10.5281/zenodo.20800371",
"anchor_note": "Electron/Rydberg source theorem v5.01, source-propagation pp. 27-29 and atomic-unit audit table pp. 35-37.",
"concept_doi_families": [
{
"title": "Artian Electron Source-Lab Rydberg Theorem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20800371"
},
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "The Photon-Edge Gate: Uniqueness and Minimality of the Residual Five-Rail Complex for the Fine-Structure Constant",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20628735"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-rydberg-source"
],
"related": [
"Rydberg Source Audit",
"Source-only SI endpoint bridge",
"QED no-retune window suite",
"Photon-edge gate",
"Source/readout split",
"No-smuggling rule"
],
"external_see_also": [
{
"label": "Corpus Tree: Rydberg family",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20800371"
},
{
"label": "Observatory: Rydberg source audit",
"href": "https://quantumtraction.org/observatory/#obs-rydberg-source"
}
]
},
{
"id": "term-qed-no-retune-window-suite",
"term": "QED no-retune window suite",
"symbol": "partial K_lambda/partial O_a^exp = 0",
"aliases": [
"QED no-retune windows",
"hydrogen/QED row separation",
"single-kernel QED no-retune inheritance"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "frozen; multi-row audit pending",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The rule that downstream atomic and QED windows audit the frozen electron/photon packet but do not retune it.",
"ontology": "Real hydrogen is a readout window, not the source constructor. The frozen source packet supplies alpha_lambda, m_e^source, R_e, and the legal gamma-W access door; Lamb shifts, recoil, finite-proton rows, hyperfine splitting, a_e, muonium, and positronium are downstream windows. Precision QED v3.03 makes the status split explicit and restores the detailed audit scaffolding: the inherited five-window table is a prototype no-drift audit, while the full frozen-source covariance execution remains pending.",
"math": "partial K_lambda/partial O_a^exp = partial alpha_lambda/partial O_a^exp = partial m_e^source/partial O_a^exp = 0.",
"book_pages": "electron/Rydberg source theorem pp. 28-30 and 33-38; photon-edge/QED pages pp. 114-117; electron/Rydberg concept DOI 10.5281/zenodo.20800371",
"anchor_note": "Electron/Rydberg source theorem v5.01, hydrogen row separation pp. 28-30 and QED windows pp. 33-38; Precision QED v3.03 concept DOI 10.5281/zenodo.20121952.",
"concept_doi_families": [
{
"title": "Artian Electron Source-Lab Rydberg Theorem",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20800371"
},
{
"title": "Artian Source-Only SI Endpoint Bridge Theorem",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20936013"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
},
{
"title": "The Photon-Edge Gate: Uniqueness and Minimality of the Residual Five-Rail Complex for the Fine-Structure Constant",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20628735"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-rydberg-source",
"https://quantumtraction.org/observatory/#obs-qed-no-retune"
],
"related": [
"Rydberg Source Audit",
"Source-only SI endpoint bridge",
"Atomic-unit source propagation",
"Photon-edge gate",
"Capacity/QED kernel",
"Source/readout split",
"No-smuggling rule"
],
"external_see_also": [
{
"label": "Corpus Tree: Rydberg family",
"href": "https://quantumtraction.org/doi-map/#concept-10-5281-zenodo-20800371"
},
{
"label": "Observatory: QED no-retune row",
"href": "https://quantumtraction.org/observatory/#obs-qed-no-retune"
}
]
},
{
"id": "term-hvp-source-access-reference-framework",
"term": "HVP Source-Access Reference Framework",
"symbol": "a_mu^HVP",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green source/access and Keystone ledger; yellow physical-payload gates",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: hadronic vacuum polarization contribution to muon g-2; differs by separating frozen QCD vector-current source, muon kernel, laboratory access rows, and access covariance before any comparator is read.",
"summary": "QTT's current hadronic-vacuum-polarization reference framework for muon g-2: source, muon kernel, and laboratory rows are kept as separate objects.",
"ontology": "The hadronic vector source is not written by the experimental muon anomaly, lattice HVP, measured R(s), covariance packets, nuisance directions, or fitted resonance parameters. Experiments read the frozen QCD vector-current source through declared access rows; they do not construct the source. Version 49.0 adds the Keystone class ledger and zero-Class-K theorem while keeping F_pi global payload, BaBar active packet, ISR muon control, and the frozen two-pion lineshape falsifier yellow.",
"math": "a_mu^HVP = (alpha_lambda^2 / 3 pi^2) int K_VP(s/m_mu^2) R_src(s) d ln s; M_{R(s)}^AC:(R_src^QTT,{D_d^{R(s)}})->(Delta,z,chi_AC^2,p_AC,{a_{mu,d}^HVP}); D_obs R_src^QTT=0. HVP v49: N_K^HVP=0.",
"book_pages": "pp. 583-620 and p. 1262; concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian's HVP Source-Access Reference Framework",
"date": "2026-07-03",
"concept_doi": "10.5281/zenodo.20732034"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access"
],
"related": [
"HVP constructor firewall",
"HVP access-covariance map",
"HVP laboratory row packet",
"HVP vector source ledger",
"2pi/rho scalar access factor",
"HVP row-topology ladder",
"No-smuggling rule",
"Keystone class"
],
"external_see_also": []
},
{
"id": "term-hvp-constructor-firewall",
"term": "HVP constructor firewall",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: blinding/preregistration and fit-domain separation; differs by forbidding a_mu^exp, lattice HVP, measured R(s), covariance packets, nuisance directions, or fitted resonance parameters from writing R_src.",
"summary": "The no-smuggling guardrail that forbids HVP comparator data from choosing the QTT source.",
"ontology": "The firewall protects the source/readout split: observation rows may falsify the printed source, but they may not tune the source after the central values are known.",
"math": "delta R_src^QTT/delta y_d = delta R_src^QTT/delta Sigma_d^lab = delta R_src^QTT/delta theta_d = delta R_src^QTT/delta a_mu^exp = delta R_src^QTT/delta a_mu^HVP,lat = 0.",
"book_pages": "pp. 583-620; concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access"
],
"related": [
"Constructor domain",
"Audit domain",
"No-smuggling rule",
"Pre-registration lock",
"HVP Source-Access Reference Framework",
"HVP access-covariance map"
],
"external_see_also": []
},
{
"id": "term-hvp-access-covariance-map",
"term": "HVP access-covariance map",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: covariance propagation and chi-square goodness-of-fit; differs by making covariance an access-row audit object after the source is fixed, not a hidden constructor of the source.",
"summary": "The current formal map that lets laboratory R(s), F_pi, lattice, e+e-, and tau rows audit the frozen HVP source with their own correction, nuisance, binning, background, and covariance objects.",
"ontology": "Access covariance belongs on the laboratory row side. It describes how a row reads the source and how its uncertainty is audited; it is not allowed to change the source being read.",
"math": "mu_d^QTT(theta_d)=P_d[C_d(theta_d)A_d^QTT R_src^QTT]+b_d(theta_d); Sigma_d^AC=Sigma_d^lab+J_d V_{theta,d} J_d^T+Sigma_d^miss; chi_AC^2=Delta^T(Sigma^AC)^-1 Delta.",
"book_pages": "pp. 583-620 and Observatory HVP row; concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access"
],
"related": [
"HVP laboratory row packet",
"HVP constructor firewall",
"Audit domain",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-hvp-laboratory-row-packet",
"term": "HVP laboratory row packet",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "source-equation closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: experimental data vector, covariance matrix, response matrix, and background model; differs as a declared finite access object D_d^{R(s)} that reads the source without rewriting it.",
"summary": "The frozen current-version object that names the data vector, lab covariance, binning map, correction map, QTT access map, background model, nuisance domain, and row hash for one HVP laboratory row.",
"ontology": "A row packet makes the row inspectable before it is used. The QTT source is upstream; the row packet carries the finite laboratory access conditions that can confirm, stress, or falsify the source.",
"math": "D_d^{R(s)}=(s_d,y_d,Sigma_d^lab,P_d,C_d,A_d^QTT,b_d,Theta_d,H_d); Delta_d=y_d-mu_d^QTT(theta_d^*); z_d=L_d^-1 Delta_d.",
"book_pages": "pp. 583-620 and Observatory HVP row; concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access"
],
"related": [
"HVP access-covariance map",
"Pre-registration lock",
"Source/readout split",
"HVP Source-Access Reference Framework"
],
"external_see_also": []
},
{
"id": "term-hvp-vector-source-ledger",
"term": "HVP vector source ledger",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: e+e- hadronic spectral function or QCD vector-current source; differs because the eight-row source weights are printed as a finite QTT source ledger before laboratory rows.",
"summary": "The eight-row QCD vector-current source ledger used by the HVP reference framework.",
"ontology": "The ledger is the source side of the HVP object before laboratory row access. Its row weights are printed as finite source accounting rather than inferred from the muon anomaly.",
"math": "nu = (1/704)(279,31,62,9,1,2,256,64) over (rho/2pi, omega, phi, 4pi, omega pi, K Kbar, c, b).",
"book_pages": "pp. 583-590; concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access"
],
"related": [
"18:2:4 light-vector charge ledger",
"HVP constructor firewall",
"NICK",
"Color closure"
],
"external_see_also": []
},
{
"id": "term-18-2-4-light-vector-charge-ledger",
"term": "18:2:4 light-vector charge ledger",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: rho/omega/phi electromagnetic current decomposition; differs by treating the squared-charge shares as a source ledger, not fitted branching fractions.",
"summary": "The light-vector charge split used in the HVP source ledger.",
"ontology": "QTT reads the rho/omega/phi light-vector shares as source charge accounting: the laboratory resonances are access images of the source ledger, not adjustable partitions.",
"math": "(rho, omega, phi) shares = (3/4, 1/12, 1/6) = (1/24)(18,2,4).",
"book_pages": "pp. 583-590; concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access"
],
"related": [
"HVP vector source ledger",
"Charge ledger",
"GEORGE normalization",
"A7"
],
"external_see_also": []
},
{
"id": "term-2pi-rho-scalar-access-factor",
"term": "2pi/rho scalar access factor",
"symbol": "lambda_8",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard frame: HVP dispersion-window rescaling; differs because QTT derives the factor from the 15/(64 rho) source-access word rather than fitting it to close muon g-2.",
"summary": "The HVP intermediate-window access factor from the 15/(64 rho) source-access word.",
"ontology": "The factor is an audit bridge, not a final HVP value. It is legal only when its integer source word is printed before the scalar comparator is read.",
"math": "lambda_8 = exp[-15/(64 rho)] = 0.960428894985; 198.8(1.1)e-10 -> 206.9909(1.1453)e-10, +0.257 sigma against 206.6(1.0)e-10.",
"book_pages": "pp. 591-600; concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access"
],
"related": [
"rho",
"HVP row-topology ladder",
"HVP constructor firewall",
"Access window"
],
"external_see_also": []
},
{
"id": "term-hvp-row-topology-ladder",
"term": "HVP row-topology ladder",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard frame: dataset convention corrections and row compatibility factors; differs because legal row integers are generated from frozen metadata topology bits before central values are opened.",
"summary": "The metadata-only HVP row-depth ladder that generates legal row integers before central values are opened.",
"ontology": "The row class is selected by declared topology bits and covariance metadata, not by the observed scalar pull. This keeps the future blind HVP row honest.",
"math": "chi_0 = 15/(512 rho); q_HVP = exp[-15/(512 rho)] = 0.994965798198; legal n in {0,2,3,4,8}.",
"book_pages": "pp. 591-600 and 609-620; concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hvp-source-access",
"https://quantumtraction.org/observatory/#pred-hvp-blind"
],
"related": [
"Pre-registration lock",
"No-retune rule",
"2pi/rho scalar access factor",
"HVP Source-Access Reference Framework"
],
"external_see_also": []
},
{
"id": "term-fine-structure-constant",
"term": "Fine-structure constant",
"symbol": "alpha",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: electromagnetic coupling alpha; differs by moving the construction from fitted input to a photon-edge source/readout theorem.",
"summary": "QTT's Artian Geometry door into electromagnetic coupling, now anchored by the photon-edge gate theorem rather than treated as a fitted input.",
"ontology": "The alpha route is one of the central Artian's Constants claims: if the photon-edge and capacity rails are legal, the observed electromagnetic coupling is a downstream readout, not a free number. CODATA is used as an audit after the five-rail residual source object is fixed.",
"math": "alpha_QTT^-1 = 4*pi*(8 + rho/2 + lambda_gamma) = 137.035999165998; CODATA 2022 audit: -0.523927 sigma.",
"book_pages": "pp. 23, 41, 304, 540, 782, 1037-1045; photon-edge theorem concept DOI 10.5281/zenodo.20628735 is the current theorem-grade citation",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Photon-Edge Gate: Uniqueness and Minimality of the Residual Five-Rail Complex for the Fine-Structure Constant",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20628735"
},
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
},
{
"title": "Universal Quantum Capacity Laws and Precision QED",
"date": "2026-06-26",
"concept_doi": "10.5281/zenodo.20121952"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-alpha-door"
],
"related": [
"Photon-edge gate",
"Capacity/QED kernel",
"Artian's Constants",
"No-smuggling"
],
"external_see_also": []
},
{
"id": "term-artian-s-constants",
"term": "Artian's Constants",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The family of constants the corpus attempts to derive from Artian Geometry/QTT rather than fit independently.",
"ontology": "The phrase should always carry ownership as Artian's Constants. It groups the photon-edge fine-structure theorem, Kerr, Boltzmann, Stefan-Boltzmann, and related capacity constants under the same finite-geometry program.",
"math": "",
"book_pages": "pp. 280, 304, 540, 748-755, 1037-1045",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Photon-Edge Gate: Uniqueness and Minimality of the Residual Five-Rail Complex for the Fine-Structure Constant",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20628735"
},
{
"title": "Artian Geometry's Door: The Fine-Structure Constant",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20330268"
},
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
},
{
"title": "Boltzmann's Constant as Thermal-Access Stiffness: A Parameter-Free QTT Derivation of the Role and Uniqueness of kBk_B kB from Dimensionless Address-Counting Entropy and the UEL Energy Cell",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.20322035"
},
{
"title": "The Stefan–Boltzmann Constant as a Photon-Throughput Theorem of Artian Geometry and Phase Topology",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20323076"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Photon-edge gate",
"Fine-structure constant",
"Kerr constant",
"Boltzmann constant",
"Stefan-Boltzmann constant"
],
"external_see_also": []
},
{
"id": "term-kerr-constant",
"term": "Kerr constant",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Electro-optic Kerr response factorized into a trace-free Artian source rail, clock/access projection, and independent material polarizability rail.",
"ontology": "The QTT claim is the source/access form, not that nitrobenzene or TGG are derived from axioms alone. The material rail must be computed from independent material inputs.",
"math": "Delta n = lambda K E^2; K_lab = cos(pi/8) A_K for static cells after legal access factors.",
"book_pages": "pp. 280, 541, 672, 680; DOI record carries the full access audit",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
}
],
"reader_links": [
"https://quantumtraction.org/2026/06/04/i-asked-an-ai-to-roast-my-paper/"
],
"observatory_links": [],
"related": [
"Trace-free Artian tensor",
"F_drift",
"No-smuggling"
],
"external_see_also": []
},
{
"id": "term-trace-free-artian-tensor",
"term": "Trace-free Artian tensor",
"symbol": "Q_ij^E",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The unique trace-free quadratic source tensor in the Kerr response theorem.",
"ontology": "The isotropic trace is removed because the Kerr birefringence source is a direction-reading access rail, not total scalar field energy.",
"math": "Q_ij^E = E_i E_j - (1/3) E^2 delta_ij.",
"book_pages": "pp. 280, 541",
"anchor_note": "Book v10.01: trace-free dyadic closure p.34 cited by Kerr paper.",
"concept_doi_families": [
{
"title": "The Kerr Constant from Artian Geometry and Quantum Traction Theory",
"date": "2026-06-05",
"concept_doi": "10.5281/zenodo.20539673"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Kerr constant",
"Trace-free dyadic closure",
"Access window"
],
"external_see_also": []
},
{
"id": "term-boltzmann-constant",
"term": "Boltzmann constant",
"symbol": "k_B",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Thermal-access stiffness in the QTT capacity/entropy reading.",
"ontology": "The Boltzmann route attempts to explain why the thermal ledger converts dimensionless address-counting entropy into laboratory energy-temperature units.",
"math": "",
"book_pages": "pp. 369-372, 748, 755",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Boltzmann's Constant as Thermal-Access Stiffness: A Parameter-Free QTT Derivation of the Role and Uniqueness of kBk_B kB from Dimensionless Address-Counting Entropy and the UEL Energy Cell",
"date": "2026-05-26",
"concept_doi": "10.5281/zenodo.20322035"
},
{
"title": "Entropy Production as Anchored Modular Charge: A Parameter-Free QTT Derivation of the Second Law and Its Area-Law, Page-Bound and Transport Consequences",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045306"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Entropy anchored modular charge",
"Artian's Constants"
],
"external_see_also": []
},
{
"id": "term-stefan-boltzmann-constant",
"term": "Stefan-Boltzmann constant",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Photon-throughput theorem of Artian Geometry and phase topology.",
"ontology": "The radiation constant is treated as a finite throughput/readout of photon capacity rather than an isolated empirical coefficient.",
"math": "",
"book_pages": "pp. 540, 748-755",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Stefan–Boltzmann Constant as a Photon-Throughput Theorem of Artian Geometry and Phase Topology",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20323076"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Photon throughput",
"Artian's Constants",
"A6"
],
"external_see_also": []
},
{
"id": "term-dyadic-closure",
"term": "Dyadic closure",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The SU(2)/Z2-style two-rail closure used in spin, weak/chiral, and mirror-doublet exclusion routes.",
"ontology": "Dyadic closure says a two-door capacity object must close without producing a mirror duplicate when the finite address and dial constraints are enforced.",
"math": "",
"book_pages": "pp. 552, 1248, 1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Fundamental Dyadic Closure and Mirror-Doublet Exclusion in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20053461"
},
{
"title": "Capacity Selection of Left-Handed Weak Interactions: A QTT Derivation of Neutrino Chirality, V−A Parity Violation, and the Active-Neutrino Mass Spectrum from First Principles",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20051961"
},
{
"title": "The Folman Phase Spine, Access-Law Timing, Dyadic J-Rotor Holonomy, 4π Periodicity, T 3 Scaling, and the Planck-Mass Superposition Ceiling",
"date": "2026-05-11",
"concept_doi": "10.5281/zenodo.20123495"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"4pi periodicity",
"Chirality",
"Hadamard half-share"
],
"external_see_also": []
},
{
"id": "term-triadic-closure",
"term": "Triadic closure",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The three-center/color closure grammar behind the color-confinement and glueball records.",
"ontology": "Triadic closure is the color-sector counterpart of finite bundle closure: open color cannot remain as an asymptotic record if the A6/A7 color boundary is legal.",
"math": "",
"book_pages": "pp. 132, 543-545, 1008",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "QTT Color-Closure Confinement from Artian Center Sheets: Finite Color-Boundary Complex, No-Open-Color Gate, A6-Blocked String Tension",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20568652"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Color closure",
"Glueball mass gap",
"No-open-color gate"
],
"external_see_also": []
},
{
"id": "term-color-closure",
"term": "Color closure",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "A7 modular boundary closure in the SU_J(3) color sector, blocking nonzero triadic center charge as an open asymptotic record.",
"ontology": "Color confinement is read as an address/boundary-completion rule, not a rhetorical renaming of QCD.",
"math": "No open-color asymptotic records when nonzero triadic center charge cannot close the boundary.",
"book_pages": "pp. 1008-1020",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "QTT Color-Closure Confinement from Artian Center Sheets: Finite Color-Boundary Complex, No-Open-Color Gate, A6-Blocked String Tension",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20568652"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Triadic closure",
"No-open-color gate",
"Glueball mass gap"
],
"external_see_also": []
},
{
"id": "term-no-open-color-gate",
"term": "No-open-color gate",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The color-sector boundary condition that forbids unclosed color records from appearing as asymptotic states.",
"ontology": "The gate is an A6/A7 access-boundary statement: a color source may exist internally, but the observed record must be color-closed.",
"math": "",
"book_pages": "pp. 1008-1020",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "QTT Color-Closure Confinement from Artian Center Sheets: Finite Color-Boundary Complex, No-Open-Color Gate, A6-Blocked String Tension",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20568652"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Color closure",
"A6",
"A7"
],
"external_see_also": []
},
{
"id": "term-glueball-mass-gap",
"term": "Glueball mass gap",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The QTT finite mass-gap/glueball spectrum prediction from the A1-A7 source and SU_J(3) color-closure spine.",
"ontology": "The record gives a sharp particle-sector claim: if the color-closure spine and the locked QCD sheet scale are correct, glueball masses read as fixed ratios against sqrt(sigma_3), not as fitted resonance assignments.",
"math": "m_G^QTT = r_G sqrt(sigma_3)^QTT; sqrt(sigma_3)^QTT = 444.253151 MeV; m_0++^QTT = 1.731197064 GeV.",
"book_pages": "pp. 122, 1008-1020",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"sigma_3 QCD sheet scale",
"Color closure",
"Triadic closure",
"No-open-color gate"
],
"external_see_also": []
},
{
"id": "term-nick",
"term": "NICK",
"symbol": "",
"aliases": [
"Neutral Identity Color Kernel",
"NICK strong anchor"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: QCD strong-coupling anchor; differs by using a named neutral identity color kernel rather than a fitted alpha_s input.",
"summary": "Neutral Identity Color Kernel: the named QTT strong-sector anchor whose current source-form theorem gives chi_YM(m_Z) and alpha_s(m_Z), with string-tension and glueball rows downstream.",
"ontology": "NICK is a QTT-native color-sector kernel, not a synonym for ordinary QCD running. The strong-coupling form is now a printed source theorem; string tension and glueball transfers remain downstream audits of the same rail.",
"math": "chi_YM(m_Z) = 2/3 + 1/(4 rho^2), rho = 2pi cos(pi/8); alpha_s(m_Z) = 1/(4pi chi_YM) = 0.11805244792.",
"book_pages": "pp. 136, 246-249, 1008-1020; strong-coupling theorem concept DOI 10.5281/zenodo.20625550 carries the current strong-anchor route",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Color-Closure Confinement from Artian Center Sheets: Finite Color-Boundary Complex, No-Open-Color Gate, A6-Blocked String Tension",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20568652"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-qcd-glue"
],
"related": [
"NICK formula",
"A6 Hadamard center-sheet half-share theorem",
"sigma_3 QCD sheet scale",
"Lambda3",
"Color closure",
"Glueball mass gap"
],
"external_see_also": []
},
{
"id": "term-nick-formula",
"term": "NICK formula",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: QCD alpha_s normalization; differs as the compact NICK strong-anchor expression.",
"summary": "Compact QTT expression for the strong-coupling source form: chi_YM(m_Z) = 2/3 + 1/(4 rho^2).",
"ontology": "NICK belongs to the QTT-novel Standard-Model program. The comparator value is an audit after the source form is fixed, not a constructor input.",
"math": "chi_YM(m_Z) = 2/3 + 1/(16pi^2 cos^2(pi/8)); alpha_s(m_Z) ~= 0.1180524479.",
"book_pages": "pp. 136, 246-249, 1008-1020; strong-coupling theorem concept DOI 10.5281/zenodo.20625550 carries the current source-form route",
"anchor_note": "Book v10.01: Standard-Model scorecard / NICK-H compact form; current source-form theorem concept DOI 10.5281/zenodo.20625550.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Color-Closure Confinement from Artian Center Sheets: Finite Color-Boundary Complex, No-Open-Color Gate, A6-Blocked String Tension",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20568652"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A6 Hadamard center-sheet half-share theorem",
"Color closure",
"Fine-structure constant",
"GEORGE"
],
"external_see_also": []
},
{
"id": "term-a6-hadamard-center-sheet-half-share-theorem",
"term": "A6 Hadamard center-sheet half-share theorem",
"symbol": "S_A6(k=±1)",
"aliases": [
"Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"A6 half-share theorem"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: boundary-condition or lattice center-factor normalization; differs because QTT treats the 1/2 as an A6 capacity-preserving two-side transfer, not as a tunable multiplier.",
"summary": "The QCD center-sheet theorem fixing the minimal nonzero A6 boundary crossing at one half and, in v4.0, closing the compact-color kernel beneath the beta_Z/Haar-root source chain.",
"ontology": "A nonzero Z3 center boundary forces a center sheet. A local sheet crossing has two sides, inside and outside, and A6 finite capacity forbids a preferred side. Therefore the only real, capacity-preserving, unbiased transfer is the Hadamard half-share. Version 4.0 then forces the first-order compact-color source kernel before comparison. The half-share, beta_Z, kernel, and Haar coefficient are not chosen to match string tension; the string-tension comparator audits the already-locked source afterward.",
"math": "H_cap = (1/sqrt(2)) [[1,1],[1,-1]]; S_A6(k=±1)=1/2; Phi_3(U)=(1/3)Re_J Tr(U); K_betaZ^QTT(U)=exp[(beta_Z/3)Re_J Tr(U)]; c_3/c_1(beta_Z)=0.849017324821154.",
"book_pages": "QCD/string/glue scorecard pp. 126-128; color/QCD source anchors pp. 1008-1020; concept DOI 10.5281/zenodo.20744161",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a6-half-share-qcd"
],
"related": [
"Center-sheet half-share",
"sigma_3 QCD sheet scale",
"Boundary half-share rule",
"A6",
"NICK",
"Color closure"
],
"external_see_also": []
},
{
"id": "term-center-sheet-half-share",
"term": "Center-sheet half-share",
"symbol": "1/2",
"aliases": [
"Hadamard half-share",
"two-side capacity share"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: Z3 center sheet or domain-wall crossing; differs because the local crossing is counted as an unbiased two-side capacity share.",
"summary": "The one-half capacity share carried by a minimal symmetric nonzero center-sheet crossing.",
"ontology": "The center sheet is not an adjustable lattice convention in QTT. It is a finite boundary object whose crossing must split the local capacity budget without preferring either side.",
"math": "minimal symmetric center crossing => inside/outside share = (1/2,1/2).",
"book_pages": "QCD/string/glue scorecard pp. 126-128; concept DOI 10.5281/zenodo.20744161",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a6-half-share-qcd"
],
"related": [
"A6 Hadamard center-sheet half-share theorem",
"Boundary half-share rule",
"Triadic closure"
],
"external_see_also": []
},
{
"id": "term-sigma-3-qcd-sheet-scale",
"term": "sigma_3 QCD sheet scale",
"symbol": "sqrt(sigma_3)",
"aliases": [
"QCD sheet scale",
"sqrt(sigma_3)",
"A6-locked string scale"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green-candidate",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: static-source string tension; differs because QTT locks the source scale before the lattice/string comparator is read.",
"summary": "The locked QTT QCD sheet scale fixed by the A6 half-share, forced compact-color kernel, beta_Z source stiffness, and compact SU_J(3) Haar-root readout.",
"ontology": "sigma_3 is the source QCD sheet scale underneath several downstream rows. It should not be retuned separately for string tension, vector centroids, HVP weights, chiral scales, or glueball masses. The v4.0 record makes the source kernel explicit before any laboratory comparator is read.",
"math": "s_3^A6 = -ln[(1/3)(c_3/c_1)] + 1/2 = 1.76228797539733; sqrt(sigma_3)^QTT = 444.25315096 MeV; sigma_3^QTT = 0.1973608621 GeV^2.",
"book_pages": "QCD/string/glue scorecard pp. 126-128; concept DOI 10.5281/zenodo.20744161",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a6-half-share-qcd",
"https://quantumtraction.org/observatory/#pred-qcd-sheet-downstream"
],
"related": [
"Static-source string tension",
"Vector source centroids",
"Glueball mass gap",
"HVP Source-Access Reference Framework",
"NICK"
],
"external_see_also": []
},
{
"id": "term-compact-color-kernel",
"term": "Compact-color kernel",
"symbol": "K_betaZ^QTT(U)",
"aliases": [
"QTT compact-color source kernel",
"A6 compact-color transfer kernel",
"K_betaZ kernel"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: Wilson one-plaquette/lattice source kernel; differs because QTT derives the first-order source kernel from a declared compact real-J color transfer class rather than choosing an action family phenomenologically.",
"summary": "The unique first-order QTT compact-color source kernel forced inside the declared local one-plaquette real-J SU_J(3) transfer class.",
"ontology": "The compact-color kernel is not borrowed from a human-chosen continuum or lattice regulator. QTT declares the legal first-order source class first: compact real-J SU_J(3), class-function readout, one nonzero Z3 boundary, one fundamental color face, real-J-even generator, and no second access rail. Inside that class, Phi_3(U) is the only legal nonconstant generator.",
"math": "Phi_3(U)=(1/3)Re_J Tr(U); K_betaZ^QTT(U)=exp[(beta_Z/3)Re_J Tr(U)].",
"book_pages": "QCD/string/glue scorecard pp. 126-128; color/QCD source anchors pp. 1008-1020; concept DOI 10.5281/zenodo.20744161",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a6-half-share-qcd"
],
"related": [
"A6 Hadamard center-sheet half-share theorem",
"beta_Z",
"SU_J(3) Haar-root readout",
"sigma_3 QCD sheet scale",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-su-j-3-haar-root-readout",
"term": "SU_J(3) Haar-root readout",
"symbol": "c_3/c_1(beta_Z)",
"aliases": [
"Haar-root readout",
"compact Haar-root coefficient",
"c3/c1 beta_Z readout"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: SU(3) one-plaquette/Weyl-Haar coefficient; differs because QTT reads it at a declared beta_Z source point rather than tuning it to a measured string tension.",
"summary": "The compact real-J SU_J(3) one-plaquette source readout that supplies the color-sheet Haar coefficient at the fixed beta_Z source point.",
"ontology": "The Haar-root coefficient is not a reverse-solved string-tension knob. It is the Peter-Weyl coefficient of the declared source kernel after rho, chi_Z, beta_Z, and the compact-color kernel have already been printed. It is therefore upstream of the static-source comparator and downstream of the A6 half-share.",
"math": "beta_Z=6chi_Z=4.04451443141649; c_3/c_1(beta_Z)=0.849017324821154; s_3^A6=-ln[(1/3)(c_3/c_1)]+1/2=1.76228797539733.",
"book_pages": "QCD/string/glue scorecard pp. 126-128; color/QCD source anchors pp. 1008-1020; concept DOI 10.5281/zenodo.20744161",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a6-half-share-qcd"
],
"related": [
"Compact-color kernel",
"beta_Z",
"chi_Z",
"sigma_3 QCD sheet scale",
"A6 Hadamard center-sheet half-share theorem",
"NICK"
],
"external_see_also": []
},
{
"id": "term-static-source-string-tension",
"term": "Static-source string tension",
"symbol": "sqrt(sigma_stat)",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green-candidate",
"epistemic_grade": "Audit or failed-route label",
"standard_physics_correlate": "nearest standard frame: lattice QCD string tension; differs because QTT treats it as an audit of the locked QCD sheet scale after source/readout conventions are matched.",
"summary": "The lattice/static-source audit comparator for the locked QTT QCD sheet scale.",
"ontology": "The comparator is downstream. It tests whether the source/readout-matched static-source convention approaches the locked QTT value; it does not choose the half-share, Haar root, or sigma_3 scale.",
"math": "sqrt(sigma_stat) -> 444.25315096 MeV after source/readout convention matching; audit comparator 445(3)(6) MeV gives about -0.11 sigma.",
"book_pages": "QCD/string/glue scorecard pp. 126-128; concept DOI 10.5281/zenodo.20744161",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-a6-half-share-qcd"
],
"related": [
"sigma_3 QCD sheet scale",
"A6 Hadamard center-sheet half-share theorem",
"Audit domain"
],
"external_see_also": []
},
{
"id": "term-vector-source-centroids",
"term": "Vector source centroids",
"symbol": "",
"aliases": [
"rho/omega source centroid",
"phi source centroid",
"HVP source centroids"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: rho, omega, and phi pole masses; differs because QTT states source centroids before source-access-pole maps convert them into laboratory resonances.",
"summary": "The source-level rho/omega and phi centroids implied by the locked QCD sheet scale.",
"ontology": "These are source centroids, not PDG pole masses. The next scientific object is the source-access-pole map that explains how the laboratory resonance rows read the source centroids without retuning the source.",
"math": "M_rho/omega^src = sqrt(3) sqrt(sigma_3) = 769.469029 MeV; M_phi^src = (4/3) M_rho/omega^src = 1025.958705 MeV.",
"book_pages": "HVP/QCD source anchors pp. 583-620 and QCD anchors pp. 1008-1020; concept DOI 10.5281/zenodo.20744161 and HVP concept DOI 10.5281/zenodo.20732034",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-qcd-sheet-downstream",
"https://quantumtraction.org/observatory/#obs-hvp-source-access"
],
"related": [
"sigma_3 QCD sheet scale",
"HVP vector source ledger",
"18:2:4 light-vector charge ledger",
"Static-source string tension"
],
"external_see_also": []
},
{
"id": "term-boundary-half-share-rule",
"term": "Boundary half-share rule",
"symbol": "",
"aliases": [
"minimal symmetric boundary crossing rule",
"A6 boundary half-share"
],
"category": "access-method",
"category_label": "Access Law and Audit Method",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: boundary coefficient or interface normalization; differs by requiring a minimal symmetric boundary crossing to carry a one-half share unless extra source structure is printed.",
"summary": "The cross-sector grammar that a minimal symmetric boundary crossing carries a one-half share unless extra structure is explicitly derived.",
"ontology": "The rule prevents arbitrary boundary multipliers. Later sector papers must either use the half-share or print why the crossing has more structure than a single two-side symmetric boundary.",
"math": "minimal symmetric boundary crossing => 1/2 share; PMNS example: b_partial=(1/2)(1/3)=1/6.",
"book_pages": "A6/A7 boundary anchors and PMNS source-access anchors pp. 158-162, 1113-1114, 1134-1138; concept DOI 10.5281/zenodo.20744161",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-boundary-half-share"
],
"related": [
"A6 Hadamard center-sheet half-share theorem",
"PMNS joint triad coefficient packet",
"HVP row-topology ladder",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-george",
"term": "GEORGE",
"symbol": "",
"aliases": [
"charge-ledger normalization",
"GEORGE normalization"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: charge normalization convention; differs by reading fractional Standard Model charges as integer dial charges before electron-normalized readout.",
"summary": "The named charge-normalization convention that reads Standard Model fractional charges as integer dial charges before electron-normalized laboratory units.",
"ontology": "GEORGE is a normalization bridge. It should not be confused with a new force; it tells the reader which charge unit is primitive in the ledger and which unit is the laboratory electron convention.",
"math": "e_* = e_gamma / 3; N_f = 3 Q_f in Z.",
"book_pages": "pp. 246-249, 283-291, 303",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Modular-holonomy partitions determine the Standard Model charge ledger",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045140"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"GEORGE normalization",
"Charge ledger",
"A4"
],
"external_see_also": []
},
{
"id": "term-george-normalization",
"term": "GEORGE normalization",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: Standard Model charge convention; differs by using e_gamma/3 as the ledger primitive.",
"summary": "The Standard-Model charge-ledger normalization in which the primitive charge unit is e_gamma/3 before electron-normalized lab readout.",
"ontology": "GEORGE is the bridge that reads Standard-Model fractional charge as integer dial charge in the underlying ledger.",
"math": "e_* = e_gamma / 3; N_f = 3 Q_f in Z.",
"book_pages": "pp. 246-249, 283-291, 303",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Modular-holonomy partitions determine the Standard Model charge ledger",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045140"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Charge ledger",
"A4",
"Maxwell transport"
],
"external_see_also": []
},
{
"id": "term-mariam",
"term": "MARIAM",
"symbol": "",
"aliases": [
"MARIAM birth masses",
"quark access/scheme mass readout",
"quark family-rank ladder"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green/yellow",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: quark mass/scheme running; differs by separating birth masses from QCD, QED, electroweak, and scheme access windows.",
"summary": "The charged-fermion family-rank ladder and quark source/readout route separating source birth sheets from QCD, QED, electroweak, CKM, and scheme access windows.",
"ontology": "MARIAM belongs to the access-law discipline: quark and charged-lepton mass numbers are not treated as naked source masses or fitted Yukawa knobs. They are source-family objects read through declared transport, holonomy, and scheme windows.",
"math": "D_U=diag(m_u,m_c,m_t), D_D=diag(m_d,m_s,m_b); V_CKM^src = R_23 R_13^J R_12; m_q^lab = Access_QCD,QED,EW,scheme(m_q^birth).",
"book_pages": "pp. 1127-1148; quark flavor pp. 1146-1148 and scorecard pp. 126-128; quark family-rank concept DOI 10.5281/zenodo.20722978",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian Quark Family-Rank and CKM Reference Framework",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20722978"
},
{
"title": "The Charged-Lepton Family-Rank Gate",
"date": "2026-06-15",
"concept_doi": "10.5281/zenodo.20698191"
},
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
},
{
"title": "Book or direct DOI anchor",
"date": "",
"concept_doi": "10.5281/zenodo.17527179"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-quark-masses",
"https://quantumtraction.org/observatory/#obs-ckm-left-access",
"https://quantumtraction.org/observatory/#obs-charged-lepton-family-rank"
],
"related": [
"Quark family-rank and CKM reference framework",
"Quark source complex",
"CKM holonomy",
"Access window",
"Lambda3",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-quark-family-rank-and-ckm-reference-framework",
"term": "Quark family-rank and CKM reference framework",
"symbol": "",
"aliases": [
"Artian quark family-rank",
"quark CKM framework",
"quark reference framework"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green/yellow",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: quark Yukawa/CKM sector; differs by building finite up/down source sheets and a real-J CKM holonomy before comparator data are opened.",
"summary": "The current citable framework for the QTT quark sector: finite source complex, up/down mass sheets, CKM as a real-J source holonomy, and the v4.0 finite precision micro-provenance packet.",
"ontology": "The framework is green for source/access separation, finite CKM source-word enumeration, finite face uniqueness, and precision micro-provenance: quark masses and CKM entries are not independent fitted knobs. It remains yellow where the paper explicitly leaves the global correlated CKM covariance packet, quark-mass source-word compiler, and baryon/proton unlock pending.",
"math": "(n12,u12,n23,a13,p_delta,q_delta,n_L)=(20,10,104,6,7,12,192); s12=0.225042858584379, s23=0.042713531540749, s13=0.003708134796885, delta=1.147687258136975; V=R_23 R_13^J R_12.",
"book_pages": "pp. 1127-1148 and scorecard pp. 126-128; concept DOI 10.5281/zenodo.20722978",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian Quark Family-Rank and CKM Reference Framework",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20722978"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-ckm-left-access",
"https://quantumtraction.org/observatory/#obs-quark-masses"
],
"related": [
"MARIAM",
"Quark source complex",
"CKM holonomy",
"Charged-Lepton Family-Rank Constructor Theorem",
"Neutrino family-rank reference theorem"
],
"external_see_also": []
},
{
"id": "term-quark-source-complex",
"term": "Quark source complex",
"symbol": "",
"aliases": [
"finite quark source complex",
"up/down source sheets",
"quark mass sheets"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green/yellow",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: quark mass matrices; differs because the up/down sheets are source objects whose laboratory values require declared access/scheme maps.",
"summary": "The finite source-side object behind the quark family-rank framework.",
"ontology": "The source complex is the object whose up/down sheets are read by laboratory mass schemes and CKM access. It prevents the page from treating six quark masses and four CKM parameters as unrelated empirical dials.",
"math": "Q_q^src = (D_U,D_D,V_CKM^src; A1-A7, MARIAM gates), with D_U and D_D source sheets before access/readout.",
"book_pages": "pp. 1127-1148; concept DOI 10.5281/zenodo.20722978",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian Quark Family-Rank and CKM Reference Framework",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20722978"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-quark-masses"
],
"related": [
"Quark family-rank and CKM reference framework",
"CKM holonomy",
"MARIAM",
"Access window"
],
"external_see_also": []
},
{
"id": "term-ckm-holonomy",
"term": "CKM holonomy",
"symbol": "",
"aliases": [
"Artian CKM holonomy",
"CKM source holonomy",
"V_CKM source holonomy"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green/yellow",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: CKM mixing matrix; differs as a path-ordered Artian source holonomy rather than a fitted unitary matrix.",
"summary": "The QTT reading of CKM as a path-ordered real-J holonomy between quark source sheets.",
"ontology": "The CKM matrix is not introduced as a fitted unitary table. It is a source-sheet transport object whose faces are printed before global-fit corridors are opened, with access/scheme caveats kept visible.",
"math": "V_CKM^src=R_23 R_13^J R_12; v4.0 precision packet: s12^prec=0.225042858584379, s23^prec=0.042713531540749, s13^prec=0.003708134796885, delta_prec=1.147687258136975, epsilon_23^L=1/(192rho).",
"book_pages": "pp. 1127-1148 and scorecard pp. 126-128; concept DOI 10.5281/zenodo.20722978",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian Quark Family-Rank and CKM Reference Framework",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20722978"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-ckm-left-access"
],
"related": [
"Quark family-rank and CKM reference framework",
"MARIAM",
"J",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-charged-lepton-family-rank-constructor-theorem",
"term": "Charged-Lepton Family-Rank Constructor Theorem",
"symbol": "D_E",
"aliases": [
"charged-lepton constructor theorem",
"family-rank constructor theorem",
"Σ-CL-FAMILY-RANK-CONSTRUCTOR-CLOSURE"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green/yellow",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: charged-lepton Yukawa sector, chain complexes, and Koide phenomenology; differs by requiring a source-side finite family complex, observation-Jacobian zero, and determinant-one access before individual lepton masses are opened.",
"summary": "The QTT theorem that fixes a finite charged-lepton family-rank constructor class before observation and then audits the resulting e, mu, tau readout.",
"ontology": "The theorem says what a non-fitting charged-lepton construction must be inside its declared Artian/MARIAM class: a finite source-word object, integer rank rows, no observed-mass constructor, determinant-one family readout, and observation opened only after the source words are fixed. Version 3.7 is stronger than the earlier shape theorem because 288 candidate words leave one survivor, but the paper keeps global uniqueness outside the declared class open.",
"math": "0 -> C_2^E --D_E-> C_1^E --partial_E-> C_0^E -> 0, partial_E D_E = 0\nN_E^QTT = (N_e,N_mu,N_tau) = R_E(D_E,G_E;A1-A7), partial N_l^QTT / partial m_j^obs = 0\nI_E^FR = Pi_sl3 diag(1/(rho N_e),1/(rho N_mu),1/(rho N_tau)), rho=2pi cos(pi/8), Tr I_E^FR=0, det exp(I_E^FR)=1",
"book_pages": "pp. 1037-1045, 1094-1103, electron micro-rail pp. 1192-1198, scorecard pp. 126-128; charged-lepton family-rank concept DOI 10.5281/zenodo.20698191",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Charged-Lepton Family-Rank Gate",
"date": "2026-06-15",
"concept_doi": "10.5281/zenodo.20698191"
}
],
"reader_links": [
"https://quantumtraction.org/doi-map/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-charged-lepton-family-rank"
],
"related": [
"Charged-Lepton Family-Rank Gate",
"Finite Artian complex",
"Observation-last audit",
"Determinant-one family access",
"Koide charged-lepton cone",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-charged-lepton-family-rank-gate",
"term": "Charged-Lepton Family-Rank Gate",
"symbol": "D_E",
"aliases": [
"charged-lepton determinant-one family-rank gate",
"family-rank gate",
"charged-lepton access gate"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green/yellow",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: charged-lepton Yukawa sector and Koide phenomenology; differs by requiring one determinant-one access gate before individual lepton masses are opened.",
"summary": "The determinant-one charged-lepton access gate sitting inside the fuller charged-lepton family-rank constructor theorem.",
"ontology": "This is not a fitted Yukawa triple. It is a family-volume conservation and no-smuggling firewall: all three charged-lepton masses must be read through one finite family object before comparison with e, mu, and tau data. In v3.7 the declared source-word class prints one survivor with ranks (N_e,N_mu,N_tau)=(1,888,026,624,17,526,2,347), while the broader uniqueness question remains open.",
"math": "R_E^FR = exp(I_E^FR), Tr I_E^FR = 0, det R_E^FR = 1\n(m_e,m_mu,m_tau)_lab = R_E^FR (m_e,m_mu,m_tau)_core",
"book_pages": "pp. 1037-1045, 1094-1103, electron micro-rail pp. 1192-1198, scorecard pp. 126-128; charged-lepton family-rank concept DOI 10.5281/zenodo.20698191",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Charged-Lepton Family-Rank Gate",
"date": "2026-06-15",
"concept_doi": "10.5281/zenodo.20698191"
}
],
"reader_links": [
"https://quantumtraction.org/doi-map/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-charged-lepton-family-rank"
],
"related": [
"Charged-Lepton Family-Rank Constructor Theorem",
"MARIAM",
"Koide charged-lepton cone",
"Determinant-one family access",
"No-smuggling rule",
"No-retune rule"
],
"external_see_also": []
},
{
"id": "term-determinant-one-family-access",
"term": "Determinant-one family access",
"symbol": "",
"aliases": [
"trace-free family access",
"family-volume access",
"SL(3,R+) family access"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: SL(3)-style trace-free linear algebra; differs because the determinant-one condition is a no-smuggling family-volume law for mass readout, not a fitted matrix ansatz.",
"summary": "The charged-family access rule that preserves the product of the three simultaneous lepton readouts while allowing individual access exponents to redistribute the laboratory masses.",
"ontology": "QTT uses determinant-one family access as an audit firewall. A legal charged-lepton construction may move mass among e, mu, and tau readout channels, but it may not smuggle in an arbitrary overall family scale after the core object is declared.",
"math": "Tr I_E = 0 -> det exp(I_E) = 1\nm_e m_mu m_tau|lab = m_e m_mu m_tau|core",
"book_pages": "pp. 1037-1045, 1094-1103; charged-lepton family-rank concept DOI 10.5281/zenodo.20698191",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Charged-Lepton Family-Rank Gate",
"date": "2026-06-15",
"concept_doi": "10.5281/zenodo.20698191"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-charged-lepton-family-rank"
],
"related": [
"Charged-Lepton Family-Rank Gate",
"Koide charged-lepton cone",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-koide-charged-lepton-cone",
"term": "Koide charged-lepton cone",
"symbol": "",
"aliases": [
"Koide cone",
"square-root capacity cone",
"charged-lepton square-root cone"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard frame: Koide charged-lepton mass relation; differs because QTT treats the square-root cone as a constraint on family access/readout, not as an unexplained numerological coincidence.",
"summary": "The charged-lepton square-root mass cone used by QTT as a family-access constraint rather than as an isolated numerical curiosity.",
"ontology": "The Koide cone fixes charged-family shape discipline, not the full finite family-rank constructor by itself. In the current Observatory row it is carried alongside the v3.7 finite source-word audit, whose charged-lepton mass pulls are e +0.072, mu +0.188, tau -0.046 sigma.",
"math": "K_E = (m_e + m_mu + m_tau)/(sqrt(m_e)+sqrt(m_mu)+sqrt(m_tau))^2 = 2/3",
"book_pages": "pp. 1037-1045 and scorecard pp. 126-128; charged-lepton family-rank concept DOI 10.5281/zenodo.20698191",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Charged-Lepton Family-Rank Gate",
"date": "2026-06-15",
"concept_doi": "10.5281/zenodo.20698191"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-charged-lepton-family-rank"
],
"related": [
"Charged-Lepton Family-Rank Gate",
"Determinant-one family access",
"MARIAM"
],
"external_see_also": []
},
{
"id": "term-beta-z",
"term": "beta_Z",
"symbol": "β_Z",
"aliases": [
"Z-sector source stiffness",
"Wilson-normalized color-door source point"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: Wilson/lattice coupling beta; differs as a fixed Z-sector source stiffness rather than a tunable regulator.",
"summary": "The Wilson-normalized QTT color-door source point fixed by the Z-boundary stiffness rail in the A6 compact-color theorem.",
"ontology": "beta_Z should be read as a declared source stiffness in the QTT color-sector route, not as a freely retuned lattice regulator. It is printed before the forced compact-color kernel and SU_J(3) Haar coefficient are read.",
"math": "rho=2pi cos(pi/8); chi_Z=2/3+1/(4rho^2)=0.6740857385694149; beta_Z=6chi_Z=4.04451443141649.",
"book_pages": "pp. 1008-1020; color/glue workpack notation",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"chi_Z",
"Compact-color kernel",
"SU_J(3) Haar-root readout",
"NICK",
"Color closure"
],
"external_see_also": []
},
{
"id": "term-chi-z",
"term": "chi_Z",
"symbol": "χ_Z",
"aliases": [
"Z-sector response factor"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "framework theorem",
"epistemic_grade": "Theorem within QTT",
"standard_physics_correlate": "nearest standard frame: Z-sector susceptibility/response factor; differs as a declared access response rail rather than an empirical patch.",
"summary": "The QTT Z-boundary stiffness/response rail that fixes beta_Z in the A6 compact-color source chain.",
"ontology": "chi_Z names a declared response rail. It must be printed before comparison, not adjusted afterward to rescue a color-sector claim. In the A6 compact-color theorem it is the bridge from the projected rho rail to the Wilson-normalized beta_Z source point.",
"math": "chi_Z = 2/3 + 1/(4rho^2), rho=2pi cos(pi/8), so chi_Z=0.6740857385694149 and beta_Z=6chi_Z.",
"book_pages": "pp. 1008-1020; color/glue workpack notation",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian A6 Hadamard Center-Sheet Half-Share Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20744161"
},
{
"title": "The Strong-Coupling Form Theorem: Deriving χ_YM(m_Z) = 2/3 + 1/(4ρ²) and Closing the NICK Ladder",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20625550"
},
{
"title": "QTT Glueball Mass Gap and SU(3)-Forced Color Uniqueness A Parameter-Free Artian Source Derivation of the Lowest Glueball Spectrum, the Finite QTT Mass Gap, and the Gluon Access-Corridor Scale",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571454"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"beta_Z",
"Compact-color kernel",
"SU_J(3) Haar-root readout",
"NICK",
"No-smuggling rule"
],
"external_see_also": []
},
{
"id": "term-charge-ledger",
"term": "Charge ledger",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The modular-holonomy partition structure underlying Standard-Model charge assignments.",
"ontology": "Electric charge is read as integer dial/holonomy accounting before the electron-normalized lab convention is applied.",
"math": "q = N e0; in SM bridge, N_f = 3 Q_f.",
"book_pages": "pp. 247-249, 285-293, 303",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Modular-holonomy partitions determine the Standard Model charge ledger",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20045140"
},
{
"title": "Maxwell's Equations Are the Monadic Address-Transport Theorem in Quantum Traction Theory",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20060666"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"A4",
"GEORGE normalization",
"Dial holonomy"
],
"external_see_also": []
},
{
"id": "term-neutrino-ratio",
"term": "Neutrino ratio",
"symbol": "",
"aliases": [
"LIA neutrino ratio",
"neutral family-rank ratio",
"rho_nu squared"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green source-ratio theorem / audit row",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The source-first QTT neutrino mass-squared ratio, now carried by the Artian LIA neutrino family-rank reference theorem.",
"ontology": "The ratio is a no-retune test because the absolute source scale m_Delta cancels. Oscillation gaps, endpoint bounds, cosmological sums, PMNS fits, CODATA Planck units, and measured G audit the theorem after the source rail is declared; they do not write rho_nu.",
"math": "rho_nu = 2*pi*cos(pi/8); Delta m^2_31 / Delta m^2_21 = rho_nu^2 = 4*pi^2*cos^2(pi/8) = 33.69693720145647...",
"book_pages": "pp. 121-124, 521, 541, 966-967, 1195-1196; current neutrino family-rank concept DOI 10.5281/zenodo.20571452",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
},
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
},
{
"title": "Capacity Selection of Left-Handed Weak Interactions: A QTT Derivation of Neutrino Chirality, V−A Parity Violation, and the Active-Neutrino Mass Spectrum from First Principles",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20051961"
},
{
"title": "Triple parameter-free number-locks in Quantum Traction Theory: the neutrino ratio, the cosmic baryon invariant, and the Hubble branch ratio",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042421"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
}
],
"reader_links": [
"https://quantumtraction.org/2025/11/24/why-are-neutrinos-only-left-handed-qtts-time-tilt-answer/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-neutrino-ratio"
],
"related": [
"I_clk",
"rho",
"Neutrino family-rank reference theorem",
"Minimal neutral spectrum",
"m_Delta",
"Chirality",
"PMNS source-access theorem"
],
"external_see_also": []
},
{
"id": "term-neutrino-family-rank-reference-theorem",
"term": "Neutrino family-rank reference theorem",
"symbol": "",
"aliases": [
"Artian LIA Neutrino Family-Rank Reference Theorem",
"Sigma-NEUTRINO-FAMILY-RANK-REFERENCE-THEOREM"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "source-ratio closed",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The current QTT theorem packaging the LIA neutrino source ratio, minimal neutral spectrum, legal-class/firewall discipline, and observation-last audit gates.",
"ontology": "The theorem is source-first: it declares the neutral family-rank rail and minimal branch before reading NuFIT, JUNO, DUNE, Hyper-K, KATRIN, DESI, Euclid, CMB-S4, or neutrinoless-double-beta constraints.",
"math": "rho_nu = 2*pi*cos(pi/8); (m1,m2,m3)=m_Delta*(0,1,rho_nu)/sqrt(rho_nu^2-1); R_nu=rho_nu^2.",
"book_pages": "pp. 1195-1196 and compact ledger p. 1252; concept DOI 10.5281/zenodo.20571452",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
},
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-neutrino-ratio"
],
"related": [
"Neutrino ratio",
"Minimal neutral spectrum",
"m_Delta",
"Non-gravitational Artian-ruler corridor",
"I_clk"
],
"external_see_also": []
},
{
"id": "term-minimal-neutral-spectrum",
"term": "Minimal neutral spectrum",
"symbol": "",
"aliases": [
"minimal active-branch spectrum",
"neutral source branch"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "closed within declared source theorem",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The QTT neutral-family spectrum in which the first row is a protected null branch and the remaining rows are fixed by rho_nu and m_Delta.",
"ontology": "It is a source spectrum, not a fit to observed oscillation gaps. The laboratory gaps audit it only after the branch is printed.",
"math": "(m1,m2,m3)=m_Delta*(0,1,rho_nu)/sqrt(rho_nu^2-1).",
"book_pages": "pp. 1195-1196 and compact ledger p. 1252; concept DOI 10.5281/zenodo.20571452",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-neutrino-ratio"
],
"related": [
"Neutrino family-rank reference theorem",
"Neutrino ratio",
"m_Delta",
"rho"
],
"external_see_also": []
},
{
"id": "term-m-delta",
"term": "m_Delta",
"symbol": "",
"aliases": [
"neutrino absolute source scale",
"neutral source scale"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "audit-open source scale",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The absolute neutrino source scale in the LIA family-rank theorem.",
"ontology": "m_Delta is not allowed to be reverse-engineered from oscillation data and then called a source derivation. Until a non-oscillation QTT source rail derives it independently, numerical SI-ruler and G rows remain observation-last audit rows.",
"math": "Delta m^2_21 = m_Delta^2/(rho_nu^2 - 1); Delta m^2_31 = rho_nu^2*m_Delta^2/(rho_nu^2 - 1).",
"book_pages": "pp. 1195-1196 and compact ledger p. 1252; concept DOI 10.5281/zenodo.20571452",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-neutrino-ratio"
],
"related": [
"Minimal neutral spectrum",
"Non-gravitational Artian-ruler corridor",
"Neutrino ratio"
],
"external_see_also": []
},
{
"id": "term-non-gravitational-artian-ruler-corridor",
"term": "Non-gravitational Artian-ruler corridor",
"symbol": "",
"aliases": [
"Artian-ruler bridge",
"G_A^(nu) audit corridor"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "formula closed / numerical audit open",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The neutrino-paper bridge from the neutral source scale to an Artian ruler without using measured G as an input.",
"ontology": "The formula is closed inside the paper, but the numerical ruler and G-style audit remain observation-last until m_Delta is independently sourced.",
"math": "m_Delta*E_*=(2*pi)^5*v_Q^2; ell_A^(nu)=hbar*c*m_Delta/((2*pi)^5*v_Q^2); G_A^(nu)=hbar*c^5*(m_Delta/((2*pi)^5*v_Q^2))^2.",
"book_pages": "pp. 1195-1196 and compact ledger p. 1252; concept DOI 10.5281/zenodo.20571452",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-neutrino-ratio"
],
"related": [
"m_Delta",
"Neutrino family-rank reference theorem",
"Artian's Constants"
],
"external_see_also": []
},
{
"id": "term-pmns-source-access-theorem",
"term": "PMNS source-access theorem",
"symbol": "U_PMNS^src",
"aliases": [
"Artian/QTT PMNS Neutrino Mixing Reference Framework",
"PMNS source-face theorem",
"PMNS angle-word root-gate certificate"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green finite enumeration/source angles/solar bridge/CKM/CP / yellow octant and CP-profile gates",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: PMNS neutrino mixing matrix; differs by reading the matrix as the real-J source orientation between charged-lepton and neutral LIA bases, with NuFIT rows as comparators only.",
"summary": "The QTT source-access reading of the PMNS neutrino mixing matrix as the relative real-J orientation of the charged-lepton and neutral LIA bases.",
"ontology": "The source object is U_PMNS^src=(U_E^src)^{T_J}U_nu^src. Version 5.0 keeps the source rows and observation rows separated, preserves the declared finite first-order source-word enumeration, and prints the CKM micro-provenance bridge that supplies the solar row. Atmospheric-octant, CP-profile likelihood, Majorana, and end-to-end access rows remain observation windows; they may audit or falsify the source, but they may not write it.",
"math": "L_PMNS^(1)=H_13 x B_23 x B_12 x D_CP; |L_PMNS^(1)|=36; w_star=(h_triangle,+b_3,+b_boundary,pi); s_C^bridge=sqrt(2)sin(pi/20)(1+1/(10rho)); U_PMNS^(src,QTT)=(U_E^(src,QTT))^(T_J) U_nu^(src,QTT).",
"book_pages": "pp. 158-162, 1113-1114, 1134-1138; PMNS source-access concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
},
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
},
{
"title": "The Charged-Lepton Family-Rank Gate",
"date": "2026-06-15",
"concept_doi": "10.5281/zenodo.20698191"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"PMNS source-face certificate",
"PMNS joint triad coefficient packet",
"PMNS solar Cabibbo interface",
"CKM micro-provenance bridge",
"PMNS candidate face",
"PMNS constructor firewall",
"PMNS atmospheric octant branch",
"PMNS CP registry",
"J_PMNS",
"Neutrino family-rank reference theorem"
],
"external_see_also": []
},
{
"id": "term-pmns-source-face-certificate",
"term": "PMNS source-face certificate",
"symbol": "C_PMNS",
"aliases": [
"PMNS finite registry certificate",
"PMNS label-permutation certificate",
"PMNS angle-word root-gate certificate",
"PMNS V5.0 certificate"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "GREEN finite enumeration uniqueness",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: PMNS parameter-label ambiguity and convention audit; differs by printing a finite 36-word source enumeration with one active survivor before observation rows are opened.",
"summary": "The v5.0 PMNS certificate around the source-access framework: it prints the finite 36-word source alphabet, the one active survivor, the CKM-derived solar bridge, the source angles, and the CP-area theorem without letting observation rows write the source.",
"ontology": "The certificate strengthens the source side while keeping the remaining gates visible. The legal source alphabet has 36 words; source gates leave exactly one active survivor, one access shadow, two quarantined CP side branches, and 32 excluded source words. This greens the finite enumeration and solar bridge inside the declared class without claiming that every laboratory PMNS access row is already green.",
"math": "|L_PMNS^(1)|=2*3*3*2=36; |S_PMNS^active|=1; PASS_SOURCE_UNIQUE=1; ACCESS_SHADOW_NOT_SOURCE=1; QUARANTINED_CP_SIDE_BRANCH=2; SOURCE_GATE_EXCLUDED=32.",
"book_pages": "pp. 158-162, 1113-1114, 1134-1138; finite angle-word/root-gate certificate under concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"PMNS source-access theorem",
"PMNS joint triad coefficient packet",
"PMNS solar Cabibbo interface",
"PMNS CP registry",
"PMNS root angle-word derivation"
],
"external_see_also": []
},
{
"id": "term-pmns-joint-triad-coefficient-packet",
"term": "PMNS joint triad coefficient packet",
"symbol": "{sqrt(3)/2, 1/3, 1/6}",
"aliases": [
"Joint Triad Coefficient Theorem",
"PMNS triad coefficients",
"PMNS angle coefficient packet"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "GREEN-COEFFICIENT",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: phenomenological angle ansatz; differs because QTT treats {sqrt(3)/2, 1/3, 1/6} as one declared source-side triad object before observation rows are read.",
"summary": "The v5.0 source-side coefficient object for the PMNS angle packet: equilateral triad height, barycentric family share, charged/neutral boundary half-share, and the CKM-derived solar bridge.",
"ontology": "The coefficient packet is not three fitted numbers. It is one source-side triad object: the height gives the reactor small face, the barycentric share moves the atmospheric angle above maximal, and the boundary half-share enters the solar interface after the charged-family Cabibbo bridge is supplied by the v5.0 CKM micro-provenance theorem.",
"math": "h_triangle=sqrt(3)/2; b_3=1/3; b_boundary=1/6; sin(theta13)=h_triangle/rho; theta23=pi/4+b_3/rho; theta12=pi/4-theta_C^bridge+b_boundary/rho.",
"book_pages": "pp. 158-162, 1113-1114, 1134-1138; coefficient and bridge theorem under concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
},
{
"title": "The Charged-Lepton Family-Rank Gate",
"date": "2026-06-15",
"concept_doi": "10.5281/zenodo.20698191"
},
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"PMNS source-access theorem",
"PMNS source-face certificate",
"PMNS solar Cabibbo interface",
"CKM micro-provenance bridge",
"PMNS root angle-word derivation"
],
"external_see_also": []
},
{
"id": "term-pmns-solar-cabibbo-interface",
"term": "PMNS solar Cabibbo interface",
"symbol": "theta_C^bridge",
"aliases": [
"PMNS solar interface",
"solar Cabibbo bridge",
"theta12 bridge"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "GREEN-SOLAR-BRIDGE",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: quark-lepton complementarity or Cabibbo-corrected mixing; differs because QTT now derives the solar bridge from a CKM micro-provenance source theorem before PMNS observation rows are opened.",
"summary": "The v5.0 PMNS solar row: theta12 is supplied by a CKM micro-provenance source bridge rather than by a fitted PMNS solar decimal.",
"ontology": "The solar row is the door between the charged-family sector and the neutral PMNS face. Version 5.0 prints the CKM path-ordering bridge directly and refuses to use the PMNS solar decimal as a hidden constructor. The bridge is therefore a source certificate, not a fitted solar knob.",
"math": "s_C^bridge=sqrt(2)sin(pi/20)(1+1/(10rho))=0.225042858584379; theta12=pi/4-arcsin(s_C^bridge)+1/(6*rho); sin^2(theta12)=0.306880189271769; Delta s_C^path=8.03050918e-5.",
"book_pages": "pp. 158-162, 1113-1114, 1134-1138; solar-bridge closure under concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
},
{
"title": "Artian Quark Family-Rank and CKM Reference Framework",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20722978"
},
{
"title": "The Charged-Lepton Family-Rank Gate",
"date": "2026-06-15",
"concept_doi": "10.5281/zenodo.20698191"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns",
"https://quantumtraction.org/observatory/#obs-ckm-left-access"
],
"related": [
"PMNS joint triad coefficient packet",
"PMNS source-face certificate",
"PMNS constructor firewall",
"CKM micro-provenance bridge",
"Quark family-rank and CKM reference framework"
],
"external_see_also": []
},
{
"id": "term-ckm-micro-provenance-bridge",
"term": "CKM micro-provenance bridge",
"symbol": "s_C^bridge",
"aliases": [
"precision Cabibbo bridge",
"source-side Cabibbo bridge",
"solar-bridge closure theorem"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "GREEN-CKM-MICROPROVENANCE",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: Cabibbo-angle input or quark-lepton complementarity insert; differs because QTT treats the precision Cabibbo bridge as a source-side quark path-ordering certificate, not as a PMNS fit parameter.",
"summary": "The v5.0 source-side bridge that supplies the Cabibbo input used by the PMNS solar row without reading PMNS observations.",
"ontology": "This bridge sits at the quark/PMNS boundary. The isolated Artian-MARIAM core face gives a near Cabibbo value, but the v5.0 theorem adds the path-ordering uplift from the quark source-access sector. The result is allowed to enter theta12 because it is a quark-sector source certificate; it is not a fit to solar, KamLAND, or NuFIT PMNS data.",
"math": "s_C^core=sqrt(exp(-3)+exp(-7)-2exp(-10))=0.224962553493; s_C^bridge=sqrt(2)sin(pi/20)(1+1/(10rho))=0.225042858584379; Delta s_C^path=8.03050918e-5.",
"book_pages": "pp. 158-162, 1113-1114, 1134-1138; PMNS bridge under concept DOI 10.5281/zenodo.20735493; full quark/CKM precision packet under concept DOI 10.5281/zenodo.20722978",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
},
{
"title": "Artian Quark Family-Rank and CKM Reference Framework",
"date": "2026-06-19",
"concept_doi": "10.5281/zenodo.20722978"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns",
"https://quantumtraction.org/observatory/#obs-ckm-left-access"
],
"related": [
"PMNS solar Cabibbo interface",
"Quark family-rank and CKM reference framework",
"PMNS source-access theorem",
"PMNS constructor firewall"
],
"external_see_also": []
},
{
"id": "term-pmns-candidate-face",
"term": "PMNS candidate face",
"symbol": "",
"aliases": [
"QTT PMNS book face",
"upper-octant CP-even PMNS face"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green finite source face / yellow atmospheric access row",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: fitted PMNS mixing angles and CP phase; differs because QTT prints one upper-octant, CP-even source face while keeping the atmospheric-octant and CP-profile gates visibly live.",
"summary": "The printed QTT normal-ordering PMNS face: upper-octant, CP-even, with reactor, solar, atmospheric, CKM-bridge, and finite-enumeration source rows green inside the v5.0 source algebra.",
"ontology": "The face is a source object, not a fitted NuFIT table. Version 5.0 makes the source side stronger without overclaiming the lab side: finite enumeration, source angles, the solar bridge, and CP branch are green inside the declared class, while atmospheric-octant, likelihood-grid, Majorana, CP-profile, and access rows remain live tests.",
"math": "sin^2 theta12=0.3068801893; sin^2 theta13=0.0222572157; sin^2 theta23=0.5572965438; delta_PMNS=pi.",
"book_pages": "pp. 160-162 and 1134-1138; concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
},
{
"title": "Artian LIA Neutrino Family-Rank Reference Theorem",
"date": "2026-06-06",
"concept_doi": "10.5281/zenodo.20571452"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"PMNS source-access theorem",
"PMNS source-face certificate",
"PMNS solar Cabibbo interface",
"PMNS atmospheric octant branch",
"J_PMNS",
"m_Delta"
],
"external_see_also": []
},
{
"id": "term-pmns-constructor-firewall",
"term": "PMNS constructor firewall",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: blinding/preregistration and fit-domain separation; differs by forbidding NuFIT angles, CP phase, and likelihood packets from writing the source PMNS matrix.",
"summary": "The no-smuggling rule for PMNS: observed angles, CP fits, likelihood tables, and oscillation probabilities cannot construct the source matrix.",
"ontology": "The firewall is the reason v5.0 can call theta13/theta23, the CKM-derived theta12 bridge, the coefficient packet, and the CP theorem green without pretending that every observation row is green. The source is fixed first; NuFIT rows, lab probabilities, and likelihood packets read it later.",
"math": "d U_PMNS^src / d theta_ij^obs = d U_PMNS^src / d delta_CP^obs = d U_PMNS^src / d NuFIT = 0 as constructor directions.",
"book_pages": "pp. 158-162, 1113-1114, 1134-1138; concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"No-smuggling rule",
"Constructor domain",
"Audit domain",
"PMNS source-access theorem",
"PMNS solar Cabibbo interface",
"CKM micro-provenance bridge"
],
"external_see_also": []
},
{
"id": "term-pmns-atmospheric-octant-branch",
"term": "PMNS atmospheric octant branch",
"symbol": "",
"aliases": [
"theta23 active branch",
"upper-octant PMNS branch"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "yellow active branch",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: theta23 octant ambiguity; differs because QTT declares the upper-octant source branch as a falsifiable row rather than a fitted preference.",
"summary": "The live PMNS falsifier: QTT prints an upper-octant theta23 source face while SK-inclusive fits currently stress the lower-octant row.",
"ontology": "The v5.0 theorem derives theta23=pi/4+1/(3*rho) as a direct source output. The branch still stays observationally live because atmospheric, DUNE, Hyper-K, IceCube/DeepCore, and row-packet choices can break the printed upper-octant source face.",
"math": "sin^2 theta23^QTT=0.5572965438, theta23=48.29007776 deg; lower-octant stress row in the paper is +5.82 sigma.",
"book_pages": "pp. 160-162 and 1134-1138; concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"PMNS candidate face",
"PMNS joint triad coefficient packet",
"J_PMNS",
"PMNS constructor firewall",
"Neutrino ratio"
],
"external_see_also": []
},
{
"id": "term-pmns-access-shadow",
"term": "PMNS access shadow",
"symbol": "",
"aliases": [
"mu-tau access shadow",
"theta23 access reflection"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "access shadow / not source",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: theta23 octant/reflection degeneracy; differs because QTT treats the mu-tau reflection as an access shadow, not a replacement source.",
"summary": "The lower-octant access reflection associated with theta23; v5.0 keeps the upper-octant source word and treats the mirror as a readout/reflection issue, not a replacement source.",
"ontology": "This is not a second source solution. It is what a row-label/access reflection looks like after the source face is printed. It remains important because the SK-inclusive row currently stresses the active upper-octant branch.",
"math": "sin^2 theta23=0.5572965438 -> 1 - sin^2 theta23 = 0.4427034562; certificate status ACCESS_SHADOW_NOT_SOURCE.",
"book_pages": "pp. 160-162 and 1134-1138; finite source-face discussion under concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"PMNS atmospheric octant branch",
"PMNS source-face certificate",
"PMNS candidate face"
],
"external_see_also": []
},
{
"id": "term-pmns-cp-registry",
"term": "PMNS CP registry",
"symbol": "",
"aliases": [
"PMNS CP branch registry",
"9pi/8 PMNS quarantine",
"PMNS side branch"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "active pi branch / 9pi8 quarantined",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: PMNS delta_CP convention and CP-branch bookkeeping; differs by deriving the active CP-even branch from a real-J zero-area theorem and quarantining the 9pi/8 side branch unless a source theorem or public erratum activates it.",
"summary": "The v5.0 CP-branch rule: the active neutral LIA PMNS face has no independent oriented CP two-cell, so the real-J source plaquette area vanishes and delta_PMNS=pi.",
"ontology": "The CP registry prevents two physically different CP branches from coexisting silently in the corpus. Version 5.0 keeps the active pi branch as the source branch and the 9pi/8 branch quarantined unless a separate source theorem or public erratum activates it.",
"math": "A_CP^J(alpha beta; i j)=Jcoeff[U_ai U_bj (U_aj)^(T_J)(U_bi)^(T_J)]; Sigma_CP^(nu,src)=empty => A_CP^J=0; delta_PMNS=pi; J_PMNS=0.",
"book_pages": "pp. 160-162 and 1134-1138; CP-area theorem and quarantine ledger under concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"J_PMNS",
"PMNS source-face certificate",
"PMNS constructor firewall"
],
"external_see_also": []
},
{
"id": "term-pmns-root-angle-word-derivation",
"term": "PMNS root angle-word derivation",
"symbol": "",
"aliases": [
"PMNS angle-word theorem",
"root PMNS angle derivation"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "GREEN finite first-order enumeration / broader access gates live",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: model-building derivation of mixing angles; differs because QTT now closes the declared finite first-order PMNS angle-word enumeration while keeping observation rows outside the constructor.",
"summary": "The v5.0 finite source-word theorem for the PMNS angle packet: within the declared first-order class, one active source word survives and the solar row is supplied by a printed CKM bridge.",
"ontology": "Version 5.0 preserves the finite first-order enumeration while adding the CKM micro-provenance bridge. It does not say that every possible higher-order source grammar, laboratory access map, atmospheric row, Majorana row, or CP-profile question is finished. It says the printed first-order PMNS source alphabet has one active survivor before observation rows enter.",
"math": "GREEN finite enumeration inside L_PMNS^(1); not equal to full empirical PMNS closure.",
"book_pages": "pp. 158-162, 1113-1114, 1134-1138; v5.0 preserves the declared finite first-order source-word enumeration and adds the CKM bridge under concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"PMNS source-face certificate",
"PMNS joint triad coefficient packet",
"PMNS solar Cabibbo interface",
"A1",
"A4",
"A6",
"A7"
],
"external_see_also": []
},
{
"id": "term-j-pmns",
"term": "J_PMNS",
"symbol": "",
"aliases": [
"leptonic Jarlskog invariant",
"PMNS CP branch"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "GREEN-CP source branch / observation rows live",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard frame: leptonic Jarlskog invariant; differs by reading CP violation through the real-J branch, with the current candidate delta=pi giving J_PMNS=0.",
"summary": "The PMNS CP readout in the active QTT branch, equal to zero because the v5.0 real-J source plaquette has zero oriented CP area and selects delta_PMNS=pi.",
"ontology": "QTT reads the CP phase as a real-J holonomy branch. Version 5.0 keeps the CP-area theorem explicit: the pi branch is source-active and the 9pi/8 branch is quarantined; future long-baseline rows can falsify the active branch, but may not tune the source phase.",
"math": "J_PMNS = c12*s12*c23*s23*c13^2*s13*sin(delta); delta_PMNS=pi => J_PMNS=0.",
"book_pages": "pp. 160-162 and 1134-1138; concept DOI 10.5281/zenodo.20735493",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Artian/QTT PMNS Neutrino Mixing Reference Framework and Source Access Mixing Theorem",
"date": "2026-06-18",
"concept_doi": "10.5281/zenodo.20735493"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-pmns"
],
"related": [
"PMNS source-access theorem",
"PMNS candidate face",
"PMNS CP registry",
"J",
"Dial holonomy"
],
"external_see_also": []
},
{
"id": "term-chirality",
"term": "Chirality",
"symbol": "",
"aliases": [
"V-A access",
"Left-handed weak selection"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "QTT capacity selection of left-handed weak interactions and active-neutrino spectrum.",
"ontology": "The chirality claim is that the visible weak access rail selects the left-handed door from the same A1/A5/A6/A7 substrate that supports the neutrino mass ratio.",
"math": "",
"book_pages": "pp. 132, 177, 504-505, 521, 935",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Capacity Selection of Left-Handed Weak Interactions: A QTT Derivation of Neutrino Chirality, V−A Parity Violation, and the Active-Neutrino Mass Spectrum from First Principles",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.20051961"
},
{
"title": "A parameter-free derivation of the neutrino mass-squared ratio Δm²₃₁/Δm²₂₁ = 4π² cos²(π/8) in Quantum Traction Theory",
"date": "2026-05-06",
"concept_doi": "10.5281/zenodo.19960813"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Neutrino ratio",
"Dyadic closure",
"A1"
],
"external_see_also": []
},
{
"id": "term-top-antitop-threshold-access",
"term": "Top-antitop threshold access",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "QTT reading of the LHC top-antitop threshold as a finite beam-access/address closure theorem.",
"ontology": "The top threshold object is not treated as a stable hadron but as a finite threshold access event with declared address closure.",
"math": "",
"book_pages": "pp. 1008-1020, 1248",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/2026/05/30/the-coffee-room-at-cern/"
],
"observatory_links": [],
"related": [
"Access window",
"Color closure",
"Top quark mass"
],
"external_see_also": []
},
{
"id": "term-oxygen-paramagnetism",
"term": "Oxygen paramagnetism",
"symbol": "",
"aliases": [],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "QTT derivation route for the O2 X^3 Sigma_g^- ground state from Artian/Faraday-style capacity counting.",
"ontology": "This is a materials-facing record connecting microscopic spin/orbital access to visible magnetic behavior.",
"math": "",
"book_pages": "pp. 280, 748-755, 1248",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Why Molecular Oxygen Is Paramagnetic: A Parameter-Free QTT Derivation of the X\\,^3\\Sigma_g^- Ground State from Artian Frontier Degeneracy and Spin-Dial Capacity Closure*",
"date": "2026-05-21",
"concept_doi": "10.5281/zenodo.20323673"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Dyadic closure",
"Kerr constant",
"Access window"
],
"external_see_also": []
},
{
"id": "term-maison-valmy",
"term": "Maison Valmy",
"symbol": "",
"aliases": [
"Maison Valmy bridge",
"hydrogen HFS bridge"
],
"category": "particle-fields",
"category_label": "Particles, Fields, and Materials",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard frame: hydrogen and muonium hyperfine spectroscopy; differs as the named QTT bridge for lepton-access clock checks.",
"summary": "The named QTT bridge for hydrogen hyperfine and structure-free muonium lepton-access clock comparisons.",
"ontology": "Maison Valmy is a memory hook for a spectroscopy access route, not a new physical constant. It points to how hydrogen and muonium hyperfine data test lepton-access clock structure.",
"math": "Hydrogen HFS and muonium access clocks compare declared lepton-access factors against precision spectroscopy.",
"book_pages": "pp. 1102-1103 and scorecard p. 144",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Book or direct DOI anchor",
"date": "",
"concept_doi": "10.5281/zenodo.17527179"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-hyperfine"
],
"related": [
"Access window",
"I_clk",
"Fine-structure constant",
"Capacity/QED kernel"
],
"external_see_also": []
},
{
"id": "term-t0-abc",
"term": "T0_ABC",
"symbol": "T_0^ABC",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "QTT absolute-background cosmic age from the triple-anchor closure record.",
"ontology": "The ABC age is the source-clock age; the observed/lab age differs through projection and clock/access structure.",
"math": "T_0^ABC = 15.40 Gyr.",
"book_pages": "pp. 540, 711-715, 1199-1205, 1248; Creation Ledger concept DOI 10.5281/zenodo.20633582",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Creation Ledger",
"ABC clock",
"Time drift",
"Hubble branch ratio"
],
"external_see_also": []
},
{
"id": "term-hubble-branch-ratio",
"term": "Hubble branch ratio",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "The local-vs-CMB Hubble branch ratio tied to the same half-angle invariant.",
"ontology": "This is one of the cross-sector appearances of I_clk: the same clock projection that appears in neutrino and quantum-information records also appears in cosmology.",
"math": "H_late / H_early = sec(pi/8).",
"book_pages": "pp. 106, 125, 540, 711-715, 1209; Creation Ledger concept DOI 10.5281/zenodo.20633582",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Triple parameter-free number-locks in Quantum Traction Theory: the neutrino ratio, the cosmic baryon invariant, and the Hubble branch ratio",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042421"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "A structural identification of the two-clock projection constant cos(π/8) with the T-gate magic-state overlap and the symmetric CHSH optimum",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19979594"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Creation Ledger",
"I_clk",
"ABC clock",
"T0_ABC"
],
"external_see_also": []
},
{
"id": "term-zahra",
"term": "ZAHRA",
"symbol": "",
"aliases": [
"ZAHRA Two-Clock Hubble Branch"
],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard frame: Hubble-tension branch model; differs by reading H0 branches through the two-clock ABC/WV access map.",
"summary": "The named two-clock Hubble-branch map connecting the ABC/WV clock rail, Creation Ledger projection fan, and observed local-versus-CMB H0 split.",
"ontology": "ZAHRA is the QTT branch label for a specific access reading of the Hubble landscape. The Creation Ledger consolidation keeps the ordinary one-clock Hubble tension separate from the QTT two-clock comparison and explicitly refuses an Omega_Lambda sigma claim.",
"math": "H_late/H_early = sec(pi/8); Creation Ledger reports the branch ratio at about +0.109 sigma and the triad 63.493 -> 68.724 / 69.734 / 70.855 km s^-1 Mpc^-1.",
"book_pages": "pp. 711-715, 1196-1197 and compact ledger p. 1252; Creation Ledger concept DOI 10.5281/zenodo.20633582",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
},
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-zahra-hubble"
],
"related": [
"Creation Ledger",
"Hubble branch ratio",
"ABC/WV closure",
"I_clk",
"T0_ABC"
],
"external_see_also": []
},
{
"id": "term-creation-ledger",
"term": "Creation Ledger",
"symbol": "",
"aliases": [
"Law of Creation ledger",
"Lambda-branch sector theorem"
],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: dark-energy/cosmological-source sector; differs by replacing a fitted dark-energy fluid with A3 address-creation accounting and explicit status labels.",
"summary": "The current sector-consolidation name for QTT's dark-energy replacement: address creation, coasting closure, vacuum identity, and status theorem.",
"ontology": "The Creation Ledger is not a dark-energy fluid with a fitted density. It is the A3 source-side accounting that makes late-time acceleration a projection/readout effect while keeping derived, consistency-fixed, motivated, and open claims visibly separated.",
"math": "rho_Lambda/rho_P = (3/8*pi)(H_Lambda t_P)^2; epsilon = (9/2)(H_Lambda t_P)^2 = 4.268e-122 is FRW-consistency fixed and remains a ledger-side IOU/falsifier.",
"book_pages": "pp. 212-213 and 711-715; Creation Ledger concept DOI 10.5281/zenodo.20633582",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Time Drift from the Law of Creation: a parameter-free derivation of cosmic age and Hubble probe-projection in Quantum Traction Theory",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20042612"
},
{
"title": "Vacuum Capacity, Endurance-Current Gravity, and the De-Gravitating Bulk: A QTT Route Toward the Cosmological-Constant Problem",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20043007"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-zahra-hubble",
"https://quantumtraction.org/observatory/#pred-passive-host-h0"
],
"related": [
"A3",
"Exact vacuum identity",
"Coasting triad",
"Passive-host H0 test",
"ABC/WV closure"
],
"external_see_also": []
},
{
"id": "term-exact-vacuum-identity",
"term": "Exact vacuum identity",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: Friedmann vacuum-density identity; differs because QTT keeps it as an exact consistency identity while marking the ledger-side epsilon source derivation as open.",
"summary": "The exact Lambda/vacuum-density identity used in the Creation Ledger paper, kept distinct from a fitted dark-energy parameter.",
"ontology": "The identity is a consistency closure of the flat Friedmann/vacuum branch. QTT's scientific boundary is that the epsilon amplitude is fixed by consistency here, while a future ledger-side derivation must still print it from the source rail.",
"math": "rho_Lambda/rho_P = (3/8*pi)(H_Lambda t_P)^2; rho_Lambda = kappa epsilon hbar c/(4*pi l_P^4), with kappa = 1/3 marked derived.",
"book_pages": "pp. 212-213; Creation Ledger concept DOI 10.5281/zenodo.20633582",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Vacuum Capacity, Endurance-Current Gravity, and the De-Gravitating Bulk: A QTT Route Toward the Cosmological-Constant Problem",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20043007"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Creation Ledger",
"Vacuum capacity",
"A3",
"No-smuggling"
],
"external_see_also": []
},
{
"id": "term-coasting-triad",
"term": "Coasting triad",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard frame: Hubble-ladder calibration ladder; differs by printing a no-retune projection fan rather than a single fitted H0.",
"summary": "The three-branch H0 projection fan printed in the Creation Ledger consolidation.",
"ontology": "The triad is a readout structure, not a new fitted H0. The ratios are treated as derived while the absolute level remains conditional on the absolute-age rail.",
"math": "63.493 -> 68.724 / 69.734 / 70.855 km s^-1 Mpc^-1; motivated star-forming offset lands near 73.03.",
"book_pages": "pp. 711-715; Creation Ledger concept DOI 10.5281/zenodo.20633582",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-zahra-hubble"
],
"related": [
"ZAHRA",
"Hubble branch ratio",
"T0_ABC",
"Passive-host H0 test"
],
"external_see_also": []
},
{
"id": "term-passive-host-h0-test",
"term": "Passive-host H0 test",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: host-environment systematics test; differs by making the passive-vs-star-forming split a directional counter-prediction.",
"summary": "Creation Ledger counter-prediction that passive-host distance-ladder samples should return systematically lower H0 than star-forming-host samples.",
"ontology": "This is a live falsifier, not a decorative explanation: the host split must be declared before reading the H0 offset, and a null or reversed split stresses the Creation Ledger projection fan.",
"math": "",
"book_pages": "Creation Ledger falsifier F-row, concept DOI 10.5281/zenodo.20633582; QTT Main Book v10.01 pp. 711-715",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-passive-host-h0"
],
"related": [
"Creation Ledger",
"Coasting triad",
"ZAHRA"
],
"external_see_also": []
},
{
"id": "term-renewal-ledger",
"term": "Renewal Ledger",
"symbol": "",
"aliases": [
"dark-matter branch ledger",
"galactic renewal ledger",
"Renewal Ledger branch"
],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard frame: dark-matter/modified-gravity sector; differs by replacing halo fitting with a fixed source-kernel, acceleration-knee, lensing, and dipole falsifier ledger.",
"summary": "The current sector-consolidation name for QTT's dark-matter replacement: fixed source-kernel gravity, acceleration-knee readout, Renewal Dust/lensing corrections, cosmic dipole, and a declared falsifier ledger.",
"ontology": "The Renewal Ledger is not a cold-dark-matter halo renamed in QTT language and not a MOND interpolation function. It is the branch where baryonic source accounting, finite renewal/readout kernels, lensing corrections, and redshift/cosmic-dipole tests are kept in one audit object. Its scientific discipline is that stress rows remain visible: the RAR comparison is not promoted into a green sigma claim.",
"math": "a0_tau = c H_tau/(2*pi)\na0_lab = a0_tau/cos(pi/8) = 1.0627e-10 m s^-2\nPoisson shadow: nabla^2 Phi = 4*pi*G*K_G[rho_b, C]\nRAR stress: -6.9 sigma stat-only; -0.57 sigma full-envelope.",
"book_pages": "pp. 209-212, 535, 1209-1211, 1253-1255; Renewal Ledger concept DOI 10.5281/zenodo.20643892",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Renewal Dust: A Quantum Traction Theory Mechanism",
"date": "2026-05-08",
"concept_doi": "10.5281/zenodo.20071244"
},
{
"title": "Shape-Locked Validation of the QTT Substrate-Curvature Cluster-Lensing Equation on Abell 2744 Across Three Independent Reconstructions",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20091011"
},
{
"title": "H1 Out-of-Sample Failure Confirmed: MACS J0025 and El Gordo Cluster-Lensing Test",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20095338"
}
],
"reader_links": [
"https://quantumtraction.org/2025/11/22/qtt-vs-the-dark-sector-vacuum-capacity-and-renewal-dust-instead-of-dark-matter-dark-energy/",
"https://quantumtraction.org/2025/11/06/the-galaxy-knee-in-one-line-and-why-it-matters/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-renewal-ledger"
],
"related": [
"Source kernel",
"Acceleration knee",
"Renewal Dust",
"ABC/WV closure",
"H1 failure records"
],
"external_see_also": []
},
{
"id": "term-source-kernel",
"term": "Source kernel",
"symbol": "",
"aliases": [
"fixed-coefficient source kernel",
"K_G",
"renewal source kernel"
],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard frame: Poisson-source kernel or halo response law; differs because the allowed gravitational source is a finite QTT renewal/readout object rather than an adjustable dark halo profile.",
"summary": "The fixed gravitational source object in the Renewal Ledger branch, used to avoid per-galaxy halo fitting and interpolation-function retuning.",
"ontology": "The source kernel is a finite access/readout object: it says which baryonic/renewal ledger information is allowed to source the laboratory potential. It is not a free halo profile and not a post-hoc smoothing term. Its legitimacy depends on no-retune SPARC/RAR/BTFR/lensing tests.",
"math": "nabla^2 Phi = 4*pi*G*K_G[rho_b, C]\nK_G must be fixed before the galaxy/lensing comparator is read.",
"book_pages": "pp. 209-212, 535, 1209-1211; Renewal Ledger concept DOI 10.5281/zenodo.20643892",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Renewal Dust: A Quantum Traction Theory Mechanism",
"date": "2026-05-08",
"concept_doi": "10.5281/zenodo.20071244"
},
{
"title": "Shape-Locked Validation of the QTT Substrate-Curvature Cluster-Lensing Equation on Abell 2744 Across Three Independent Reconstructions",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20091011"
},
{
"title": "H1 Out-of-Sample Failure Confirmed: MACS J0025 and El Gordo Cluster-Lensing Test",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20095338"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-renewal-ledger"
],
"related": [
"Renewal Ledger",
"Acceleration knee",
"Renewal Dust",
"No-retune rule",
"Access window"
],
"external_see_also": []
},
{
"id": "term-acceleration-knee",
"term": "Acceleration knee",
"symbol": "",
"aliases": [
"a0_tau",
"MOND-like acceleration knee",
"galaxy acceleration knee"
],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard frame: MOND a0/RAR scale; differs because QTT treats the knee as a clock/source-kernel readout with a declared redshift test, not as a fitted universal constant.",
"summary": "QTT's acceleration-knee readout for galaxy phenomenology, now anchored by the Renewal Ledger concept DOI.",
"ontology": "The knee is not a fitted MOND constant. In QTT it is the laboratory face of the clock/source-kernel branch, and therefore it must expose redshift evolution and lensing consistency rather than be protected by an adjustable interpolation function.",
"math": "a0_tau = c H_tau/(2*pi)\na0_lab = a0_tau/cos(pi/8)\nRedshift test: the knee should follow the declared QTT clock/source-kernel branch rather than remain an immutable fitted constant.",
"book_pages": "pp. 535, 538-549, 565, 1209-1211; Renewal Ledger concept DOI 10.5281/zenodo.20643892",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Renewal Dust: A Quantum Traction Theory Mechanism",
"date": "2026-05-08",
"concept_doi": "10.5281/zenodo.20071244"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a0-redshift",
"https://quantumtraction.org/observatory/#obs-renewal-ledger"
],
"related": [
"Renewal Ledger",
"Source kernel",
"a0(z)",
"ABC/WV closure"
],
"external_see_also": []
},
{
"id": "term-a0-z",
"term": "a0(z)",
"symbol": "",
"aliases": [
"RAR redshift evolution",
"MOND-like acceleration scale"
],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "yellow-prediction",
"epistemic_grade": "Locked prediction",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "QTT redshift evolution prediction for the MOND-like acceleration scale, now treated as a Renewal Ledger test rather than a standalone MOND analogy.",
"ontology": "The point of the a0(z) page is empirical stress: QTT predicts a redshift trend rather than a fixed phenomenological constant, and the current citable branch is the Renewal Ledger.",
"math": "a0_tau = c H_tau/(2*pi); a0_lab = a0_tau/cos(pi/8).\nThe redshift trend must be declared in the clock/source-kernel branch before reading high-z RAR/BTFR samples.",
"book_pages": "pp. 535, 538-549, 565, 1210; Renewal Ledger concept DOI 10.5281/zenodo.20643892",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Renewal Dust: A Quantum Traction Theory Mechanism",
"date": "2026-05-08",
"concept_doi": "10.5281/zenodo.20071244"
}
],
"reader_links": [
"https://quantumtraction.org/2025/11/25/cosmology-test-of-qtt-redshift-evolution-of-the-mond-like-acceleration-scale-a%e2%82%80z-%e2%ad%90%e2%ad%90/"
],
"observatory_links": [
"https://quantumtraction.org/observatory/#pred-a0-redshift"
],
"related": [
"Renewal Ledger",
"Acceleration knee",
"Renewal Dust",
"ABC/WV closure",
"Vacuum capacity"
],
"external_see_also": []
},
{
"id": "term-abc-wv-closure",
"term": "ABC/WV closure",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The closure theorem connecting the absolute background clock, White-Void source, cosmological constant, galaxy acceleration knee, and Hubble ladder.",
"ontology": "ABC/WV closure is the cosmology-vacuum ledger: the clock and creation source are constrained together rather than adjusted separately.",
"math": "",
"book_pages": "pp. 212-213, 540, 711-715, 1199-1205, 1254",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Triple-Anchor Closure of the QTT Absolute Background Clock: Version 1.6 — A Parameter-Free Determination of T_0^ABC = 15.40 Gyr and Its ABC/WV Clock Consequences",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20070485"
},
{
"title": "Vacuum Capacity, Endurance-Current Gravity, and the De-Gravitating Bulk: A QTT Route Toward the Cosmological-Constant Problem",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20043007"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Creation Ledger",
"ABC clock",
"White-Void",
"Vacuum capacity"
],
"external_see_also": []
},
{
"id": "term-white-void",
"term": "White-Void",
"symbol": "WV",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "The creation/source object in the vacuum/cosmology branch; retained as current corpus vocabulary in ABC/WV records.",
"ontology": "White-Void is not a mystical emptiness; it is the named source-side event/seed in the A3 creation ledger and vacuum-sector closure records.",
"math": "",
"book_pages": "pp. 210, 540, 711-715, 751, 1209",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Vacuum Capacity, Endurance-Current Gravity, and the De-Gravitating Bulk: A QTT Route Toward the Cosmological-Constant Problem",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20043007"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
},
{
"title": "Renewal Dust: A Quantum Traction Theory Mechanism",
"date": "2026-05-08",
"concept_doi": "10.5281/zenodo.20071244"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Creation Ledger",
"A3",
"ABC/WV closure",
"Renewal Dust"
],
"external_see_also": []
},
{
"id": "term-vacuum-capacity",
"term": "Vacuum capacity",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "structural",
"epistemic_grade": "Structural theorem/guardrail",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "QTT route toward the cosmological-constant problem through endurance-current gravity and a de-gravitating bulk.",
"ontology": "Vacuum energy is not simply plugged into GR; QTT separates bulk capacity, access, and gravitational coupling to explain why ordinary vacuum estimates need not gravitate naively.",
"math": "",
"book_pages": "pp. 212-213, 711-715, 1175, 1247, 1254",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "The Creation Ledger: Dark Energy, the Coasting Triad, and the Exact Vacuum Identity in Quantum Traction Theory — A Sector Consolidation, Digit Audit, and Status Theorem for the Λ Branch of the QTT Corpus",
"date": "2026-06-10",
"concept_doi": "10.5281/zenodo.20633582"
},
{
"title": "Vacuum Capacity, Endurance-Current Gravity, and the De-Gravitating Bulk: A QTT Route Toward the Cosmological-Constant Problem",
"date": "2026-05-05",
"concept_doi": "10.5281/zenodo.20043007"
},
{
"title": "The Casimir--Bundle Theorem: Access-Law Boundary Projection, A7 Modular Closure, and the Vacuum--Gravity Schism",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20099862"
},
{
"title": "An ABC/WV Closure Theorem for the Quantum Traction Theory Vacuum Sector: One Clock for the Cosmological Constant, the Galaxy Acceleration Knee, and the Hubble Ladder",
"date": "2026-05-07",
"concept_doi": "10.5281/zenodo.20069473"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Creation Ledger",
"Exact vacuum identity",
"Cosmological constant",
"ABC/WV closure",
"A7 reshuffling"
],
"external_see_also": []
},
{
"id": "term-renewal-dust",
"term": "Renewal Dust",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard concept: a model-specific construct; compare to the closest textbook object named in the definition, but do not identify them without the printed access rule.",
"summary": "A substrate-lensing correction mechanism, now one component of the broader Renewal Ledger branch rather than a standalone dark-sector placeholder.",
"ontology": "Renewal Dust is a finite-source/lensing correction tied to WV/endurance accounting. It must survive cluster and galaxy stress tests rather than be protected by prose; the H1 failure remains part of the record.",
"math": "",
"book_pages": "pp. 535, 1209-1211, 1234, 1248, 1253-1255; Renewal Ledger concept DOI 10.5281/zenodo.20643892",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Renewal Dust: A Quantum Traction Theory Mechanism",
"date": "2026-05-08",
"concept_doi": "10.5281/zenodo.20071244"
},
{
"title": "Shape-Locked Validation of the QTT Substrate-Curvature Cluster-Lensing Equation on Abell 2744 Across Three Independent Reconstructions",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20091011"
},
{
"title": "H1 Out-of-Sample Failure Confirmed: MACS J0025 and El Gordo Cluster-Lensing Test",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20095338"
}
],
"reader_links": [],
"observatory_links": [
"https://quantumtraction.org/observatory/#obs-renewal-ledger",
"https://quantumtraction.org/observatory/#obs-test-b-cluster"
],
"related": [
"Renewal Ledger",
"Source kernel",
"Abell 2744 validation",
"H1 failure records",
"White-Void"
],
"external_see_also": []
},
{
"id": "term-abell-2744-validation",
"term": "Abell 2744 validation",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "qtt-reframed",
"origin_label": "Textbook term reframed by QTT",
"status": "green-candidate",
"epistemic_grade": "Candidate / map pending",
"standard_physics_correlate": "nearest standard concept: the usual textbook object remains recognizable, but QTT re-reads its source through finite address capacity and access.",
"summary": "Shape-locked validation of the QTT substrate-curvature cluster-lensing equation across independent reconstructions.",
"ontology": "This is a positive empirical record, but it remains part of a test program that also keeps failure records visible.",
"math": "",
"book_pages": "pp. 1209-1211, 1234, 1248, 1253",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Shape-Locked Validation of the QTT Substrate-Curvature Cluster-Lensing Equation on Abell 2744 Across Three Independent Reconstructions",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20091011"
},
{
"title": "Renewal Dust: A Quantum Traction Theory Mechanism",
"date": "2026-05-08",
"concept_doi": "10.5281/zenodo.20071244"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Renewal Dust",
"H1 failure records"
],
"external_see_also": []
},
{
"id": "term-h1-failure-records",
"term": "H1 failure records",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "audit/erratum",
"epistemic_grade": "Audit or failed-route label",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Negative out-of-sample cluster-lensing audits such as MACS J0025 and El Gordo kept visible for falsification discipline.",
"ontology": "The presence of failed routes is a feature, not a blemish. It shows which hypotheses broke and prevents the page from becoming a victory-only index.",
"math": "",
"book_pages": "pp. 1209-1211, 1234, 1248, 1253-1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "H1 Out-of-Sample Failure Confirmed: MACS J0025 and El Gordo Cluster-Lensing Test",
"date": "2026-05-09",
"concept_doi": "10.5281/zenodo.20095338"
},
{
"title": "Renewal Dust: A Quantum Traction Theory Mechanism",
"date": "2026-05-08",
"concept_doi": "10.5281/zenodo.20071244"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Renewal Dust",
"Audit domain"
],
"external_see_also": []
},
{
"id": "term-equation-601-failed-route",
"term": "Equation 601 failed route",
"symbol": "",
"aliases": [],
"category": "cosmology-tests",
"category_label": "Cosmology, Lensing, and Tests",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "audit/erratum",
"epistemic_grade": "Audit or failed-route label",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Explicit failed/errata record; visibly listed as audit material, not a theorem.",
"ontology": "The failed route is part of the corpus's correction memory. It should never be cited as a successful QTT result.",
"math": "",
"book_pages": "pp. 48, 1248, 1253-1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [
{
"title": "Error/Failed report on Equation 601",
"date": "2026-05-02",
"concept_doi": "10.5281/zenodo.19982606"
}
],
"reader_links": [],
"observatory_links": [],
"related": [
"Audit/erratum",
"DOI Map"
],
"external_see_also": []
},
{
"id": "term-derived-removed",
"term": "DERIVED/REMOVED",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Book status label for an axiom-forced replacement of a fitted input.",
"ontology": "Axiom-forced replacement of a fitted or inherited input, in the book's status vocabulary.",
"math": "",
"book_pages": "pp. 118, 121-124",
"anchor_note": "Book v10.01: Status legend.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [],
"related": [
"GREEN",
"STRUCTURAL",
"CANDIDATE"
],
"external_see_also": []
},
{
"id": "term-green",
"term": "GREEN",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Book status label for a sub-sigma no-retune numerical pass or relation.",
"ontology": "Numerical access pass with an explicit structural caveat or pending convention map.",
"math": "",
"book_pages": "pp. 118, 121-124",
"anchor_note": "Book v10.01: Status legend separates GREEN from GREEN-CANDIDATE and yellow predictions.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [],
"related": [
"GREEN-CANDIDATE",
"No-retune rule"
],
"external_see_also": []
},
{
"id": "term-green-candidate",
"term": "GREEN-CANDIDATE",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Book status label for a sub-sigma numerical access pass with a named structural caveat.",
"ontology": "This status is important: numerical agreement can be real while an access convention, covariance complex, or proof rail still remains unfinished.",
"math": "",
"book_pages": "pp. 118, 120-124",
"anchor_note": "Book v10.01: Status legend.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [],
"related": [
"GREEN",
"CANDIDATE",
"Access window"
],
"external_see_also": []
},
{
"id": "term-yellow-prediction",
"term": "YELLOW-PREDICTION",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Book status label for a locked no-retune QTT prediction awaiting decisive precision data.",
"ontology": "Locked no-retune prediction awaiting decisive data.",
"math": "",
"book_pages": "pp. 114, 117-118",
"anchor_note": "Book v10.01: Status legend.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [],
"related": [
"WAITING-FOR-OBS.",
"No-retune rule"
],
"external_see_also": []
},
{
"id": "term-structural",
"term": "STRUCTURAL",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Book status label for a no-fit theorem or leading face that is not automatically a numerical pass.",
"ontology": "No-fit theorem, construction, or leading face; not automatically a precision numerical pass.",
"math": "",
"book_pages": "pp. 118, 121-124",
"anchor_note": "Book v10.01: Status legend.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [],
"related": [
"CANDIDATE",
"DERIVED/REMOVED"
],
"external_see_also": []
},
{
"id": "term-candidate",
"term": "CANDIDATE",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Book status label for a printed formula or framework where a named lemma, rail, or audit remains pending.",
"ontology": "Printed formula or framework with a named missing lemma, access map, or audit rail.",
"math": "",
"book_pages": "pp. 118, 121-124",
"anchor_note": "Book v10.01: Status legend.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [],
"related": [
"PROGRAM",
"GREEN-CANDIDATE"
],
"external_see_also": []
},
{
"id": "term-program",
"term": "PROGRAM",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Book status label for a named route whose theorem or numerical rail is not yet printed.",
"ontology": "Named route or workpack; theorem or numerical rail not yet closed.",
"math": "",
"book_pages": "pp. 118, 121-124",
"anchor_note": "Book v10.01: Status legend.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [],
"related": [
"CANDIDATE",
"YELLOW-PREDICTION"
],
"external_see_also": []
},
{
"id": "term-plts",
"term": "PLTs",
"symbol": "",
"aliases": [
"Profound Lying Theories",
"Profound Lying Theory",
"Profound Lie Theories",
"Profound Lie Theory",
"PLT"
],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "canonical",
"epistemic_grade": "Motivated heuristic",
"standard_physics_correlate": "nearest standard frame: effective-theory critique or model-risk warning; differs as Ali's QTT shorthand for technically successful frameworks that carry much truth while hiding a false source-ontology assumption.",
"summary": "Ali's shorthand for a dangerous kind of theory or framework: one with enough technical truth to work well in its regime while hiding a false source-ontology assumption.",
"ontology": "PLT is not a formal QTT theorem label. It is a field-note warning about epistemic danger: the most dangerous lies are the lies that carry 99% truth. In this usage, a PLT can be empirically powerful, mathematically elegant, and locally indispensable, while still blocking the deeper source question by treating a human-invented continuum or a fitted patch as final ontology.",
"math": "",
"book_pages": "field-note critical shorthand rather than a book theorem; source-ontology and status-discipline anchors pp. 39-42, 100-107, 711-715",
"anchor_note": "Use with care: it names a critical stance toward source ontology and model risk, not a proof of failure. The related book anchors are the source/readout split, status discipline, finite substrate, and vacuum-capacity discussion.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/2026/06/18/the-universe-humans-invented-and-forgot-they-did/"
],
"observatory_links": [],
"related": [
"Human Invented Universe",
"Source/readout split",
"No-smuggling rule",
"No-retune rule",
"Audit domain"
],
"external_see_also": [
{
"label": "Two Universes: ontology map",
"href": "https://quantumtraction.org/two-universes/"
},
{
"label": "Duct-taping theoretical physics",
"href": "https://quantumtraction.org/2026/06/02/duct-taping-theoretical-physics/"
}
]
},
{
"id": "term-media-made-science-mms",
"term": "Media Made Science - MMS",
"symbol": "",
"aliases": [
"MMS",
"Media Made Science",
"media-made science"
],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "qtt-native",
"origin_label": "QTT-native term",
"status": "governance label",
"epistemic_grade": "Motivated heuristic",
"standard_physics_correlate": "nearest standard frame: science-communication hype or sociological consensus formation; differs as a QTT governance label for media-amplified certainty before source ontology, constructor domain, audit domain, and falsifiers are separated.",
"summary": "QTT shorthand for a public-science failure mode: media repetition, prestige framing, or narrative certainty hardens a claim before source ontology, constructor domain, audit domain, and falsifiers are separated.",
"ontology": "MMS is not evidence and not a theorem. It is a warning label for the moment when visibility starts doing the work that derivation, observation, or falsification should do. On this site, an MMS concern should route readers back to concept DOI families, Observatory rows, source/readout separation, no-smuggling checks, and explicit falsifiers rather than to popularity or press certainty.",
"math": "No equation; MMS is an epistemic/audit label, not a source object.",
"book_pages": "public-science governance shorthand rather than a book theorem; constructor-domain, audit-domain, no-smuggling, and status-discipline anchors pp. 39-42, 100-107, 599-600, 974, 1072",
"anchor_note": "Use with care: public-science governance shorthand rather than a book theorem; constructor-domain, audit-domain, no-smuggling, and status-discipline anchors pp. 39-42, 100-107, 599-600, 974, 1072.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/2026/06/18/the-universe-humans-invented-and-forgot-they-did/",
"https://quantumtraction.org/2026/06/02/duct-taping-theoretical-physics/"
],
"observatory_links": [],
"related": [
"PLTs",
"Human Invented Universe",
"No-smuggling rule",
"No-retune rule",
"Constructor domain",
"Audit domain",
"Observatory"
],
"external_see_also": [
{
"label": "Two Universes: ontology map",
"href": "https://quantumtraction.org/two-universes/"
},
{
"label": "Observatory: tests and falsifiers",
"href": "https://quantumtraction.org/observatory/"
},
{
"label": "Corpus Tree: DOI map",
"href": "https://quantumtraction.org/doi-map/"
}
]
},
{
"id": "term-fabrika",
"term": "Fabrika",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "legacy bridge",
"epistemic_grade": "Legacy bridge",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Deprecated older public term; current visible prose should map it to pixellate or QTT pixellate substrate unless the legacy term itself is being discussed historically.",
"ontology": "Fabrika belongs to the 2019-2021 vocabulary bridge. The modern technical term is pixellate / QTT pixellate substrate.",
"math": "",
"book_pages": "pp. 193, 672, 680; legacy map supplies the historical crosswalk",
"anchor_note": "Site rule: normalize Fabrika/Fabrik@/Farika to pixellate where not intentionally historical.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/2025/11/26/full-mapping-of-deprecated-terminologies-2019-2021-to-mathematical-developments-in-quantum-traction-theory-qtt-2025/"
],
"observatory_links": [],
"related": [
"Pixellate",
"Legacy Terminology Map"
],
"external_see_also": []
},
{
"id": "term-akhasheni-scars",
"term": "Akhasheni scars",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "legacy bridge",
"epistemic_grade": "Legacy bridge",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Deprecated older scar/residue phrase; current visible prose should map it to access residuals or residual traces.",
"ontology": "The modern reading is not a literal scar language but a finite access residual: a trace left by an incomplete or shifted readout window.",
"math": "",
"book_pages": "pp. 193, 672, 680; legacy map supplies the historical crosswalk",
"anchor_note": "Site rule: normalize Akhasheni-scar language to access residuals/residual traces where not historical.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/2025/11/26/full-mapping-of-deprecated-terminologies-2019-2021-to-mathematical-developments-in-quantum-traction-theory-qtt-2025/"
],
"observatory_links": [],
"related": [
"Access residuals",
"Legacy Terminology Map"
],
"external_see_also": []
},
{
"id": "term-access-residuals",
"term": "Access residuals",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "Current term for residual traces left by incomplete, shifted, or finite access windows.",
"ontology": "An access residual is a mismatch or leftover in the lab readout, not a new physical substance unless a source rail is printed.",
"math": "",
"book_pages": "pp. 672, 680",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [],
"observatory_links": [],
"related": [
"Akhasheni scars",
"Access window",
"Audit residual"
],
"external_see_also": []
},
{
"id": "term-legacy-terminology-map",
"term": "Legacy Terminology Map",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "The reader-facing bridge from 2019-2021 public vocabulary into the current QTT book vocabulary.",
"ontology": "This page protects the archive without letting old terms leak into current scientific claims as if they were still canonical.",
"math": "",
"book_pages": "pp. 118, 193, 672, 680; web archive crosswalk",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/2025/11/26/full-mapping-of-deprecated-terminologies-2019-2021-to-mathematical-developments-in-quantum-traction-theory-qtt-2025/"
],
"observatory_links": [],
"related": [
"Fabrika",
"Akhasheni scars",
"Pixellate"
],
"external_see_also": []
},
{
"id": "term-doi-map",
"term": "DOI Map",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "The citable corpus atlas for QTT concept DOI families, categories, status labels, and blog-to-DOI crosswalks.",
"ontology": "The DOI Map is the audit layer: it tells readers which concept family carries which claim while keeping the public citation route stable.",
"math": "",
"book_pages": "pp. 1247-1255",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/doi-map/"
],
"observatory_links": [],
"related": [
"Pre-registration lock",
"Blog Map",
"Zenodo community"
],
"external_see_also": []
},
{
"id": "term-blog-map",
"term": "Blog Map",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "The reader-facing route map connecting field notes to concept DOI families and book topics.",
"ontology": "Blogs explain the ideas; papers carry citable objects. The Blog Map keeps those layers connected without confusing them.",
"math": "",
"book_pages": "pp. 1247-1255; web field-note index",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/blog-map/"
],
"observatory_links": [],
"related": [
"DOI Map",
"Lexicon",
"Field notes"
],
"external_see_also": []
},
{
"id": "term-youtube-map",
"term": "YouTube Map",
"symbol": "",
"aliases": [],
"category": "legacy-status",
"category_label": "Legacy Bridge and Status Labels",
"origin": "legacy-bridge",
"origin_label": "Legacy, audit, or map bridge",
"status": "canonical",
"epistemic_grade": "Readout convention",
"standard_physics_correlate": "standard correlate: historical/public vocabulary bridge; use it to translate old wording into the current book terminology.",
"summary": "The 2019 video archive map with timestamped links and current vocabulary crosswalks.",
"ontology": "The YouTube Map treats old spoken explanations as historical source material and maps them into the current book/DOI/blog vocabulary.",
"math": "",
"book_pages": "pp. 118, 193, 672, 680; 2019 archive crosswalk",
"anchor_note": "Term indexed to the v10.01 source pages listed above.",
"concept_doi_families": [],
"reader_links": [
"https://quantumtraction.org/youtube-channel-map/"
],
"observatory_links": [],
"related": [
"Legacy Terminology Map",
"Blog Map"
],
"external_see_also": []
}
]