Live QTT test and observation map

Observatory

A live ledger of QTT observations, sigma pulls, prediction protocols, internal audits, structural anchors, failed routes, book-page anchors, DOI records, and the corpus-ranked 100-item scorecard.

Scientific reading rule

A sigma entry means the book or named workpack prints a comparison pull. Shared upstream rails are printed so correlated rows are not counted as independent miracles.

Detailed records
69
Ranked anchors
100
Direct scorecard routes
93
Observed cards
16
Prediction cards
31
Failures kept
2
Routes Instrument Anatomy Ranked 100 Rails Ledger Observed Failures Keystone Top
Scope note

This page is an observation map, not a promotional scoreboard. Rows are separated into observed pulls, internal/no-retune audits, structural anchors, predictions, and negative audit records. Enumeration cards and sensitivity notes make the trials-factor and error-bar status explicit. The ranked 100-item scorecard below confirms coverage of the corpus scorecard without turning every compact item into a detailed green card. Concept DOI remains the visible citation target everywhere; the latest concept-family version speaks.

Observed pulls
Public comparator exists and the book/workpack reports a pull, corridor, or pattern statement.
Internal/no-retune
The frozen rule, covariance, or pipeline is the main audited object.
Structural anchors
Theorem, guardrail, or ontology row with empirical context but no standalone σ value.
Prediction/CLEAR
Locked future-facing test; no green label until the declared data class exists.
Audit/erratum
Negative or failed-route record preserved as part of the scientific ledger.
Reader Route

For a Skeptical Physicist

Start with the cleanest single number, then inspect dependency rails, then read the preserved failure records. The page is intentionally navigable in that order.

Instrument Panel

Pulls, Classes, and Kept Failures

The Observatory is scanned like an instrument: numeric pull distribution on one side, record classes on the other, with failures kept as part of the visible apparatus.

σ-pull histogram

15 of 26 printed numeric cards sit under 0.5σ

The histogram uses 56 printed pull entries, counting multi-entry rows such as quarks, mesons, QCD, and toponium as visible sub-pulls. The ≥1σ tail is annotated rather than hidden: Artian's Neutrino Ratio-Line Preregistration, Artian's HVP Source-Access Reference Framework, Renewal Ledger Dark-Matter Branch, Quark Family-Rank Source Sheets. The separate red failure ledger remains visible beside the flagship card.

0-0.1
17
0.1-0.25
11
0.25-0.5
11
0.5-1.0
6
>1.0
11
Record-class ledger

Status Is Never Color Alone

Every class is printed as dot, label, count, and sentence. The red class is deliberately present: failure discipline is part of the instrument.

OBSERVED-PULL GREEN
Empirical compatibility cards with a named comparator and pull
16
AUDIT
No-retune/internal audits
10
ANCHOR
Structural anchors
10
PREDICTION
Locked future-facing tests
31
FALSIFIED
Failures and errata kept
2
Coverage

Ranked Scorecard Coverage

The full 100-item corpus-ranked scorecard now has permanent Observatory anchors. Direct links point into detailed cards when those records already exist; broader rows stay compact and route to the Corpus Tree/book source.

Ranked anchors
100
Direct row routes
93
Tier S/A
6 + 10
Tier P
40
Tier B/C
20 + 24
Coverage rule

This section confirms the full 100-item ranked scorecard is represented inside the Observatory. A compact scorecard anchor is not automatically a green detailed card: when a full Observatory record exists, the row links to it; otherwise the card preserves the ranked claim and routes the reader to the Corpus Tree/book source for reconstruction.

Tier S

Rewrite-textbook bets

back to ranked scorecard
#001Tier S

Vacuum capacity / Λ ρΛ=(3/8·π)(HΛ tP)2 ρP

5.3 vs 5.4x10−10 J/m3, <1 σ, 0 params

Attacks the 10122 fine-tuning from one geometric primitive

#002Tier S

Neutrino ratio Δ m231/Δ m221=4·π2 cos2(π/8)=33.697

NuFIT 33.55±0.89, 0.16 σ

First geometric mass ratio the SM cannot predict

Neutrino detailed row Anchor: score-002
#003Tier S

Hubble tension =sec(π/8)=1.0824

73.04/67.4=1.0831, 0.1 σ

Tension as a clock effect; same constant as the neutrino ratio

Hubble branch row Anchor: score-003
#004Tier S

Coasting H(z)t(z)=1, q0=0

χ2=14.6 (0 par) vs LambdaCDM 32.2 (2 par), Δ BIC about 21

Removes dark energy as a substance

Coasting clock row Anchor: score-004
#005Tier S

Gas-only cluster lensing, one mass sheet

s about 0.99±0.02; needs replication

Would kill cluster dark matter where MOND fails

Cluster-lensing row Anchor: score-005
#006Tier S

Strong-CP θbar identically 0 from A7

about 10−61 vs nEDM <1.8x10−26

Removes the axion's motivation

QCD source row Anchor: score-006
Tier A

Paradigm-shift rows

back to ranked scorecard
#007Tier A

π/8 = T-gate overlap = CHSH optimum

exact identity

Ties quantum information to cosmology

rho/pi-eight row Anchor: score-007
#008Tier A

MOND knee a0=cH(z)/2·π, (1+z)

MUSE-DARK III β about 0.99±0.04

One observable splits QTT from MOND and LambdaCDM

#010Tier A

Merging-cluster mass-galaxy alignment

reproduces Bullet; needs replication

Structural answer to "dark matter is real"

Cluster-lensing row Anchor: score-010
#011Tier A

Spin-1/2 from dyadic SU(2) holonomy

4·π periodicity, Stern-Gerlach

Derives spin instead of postulating it

Holonomy row Anchor: score-011
#012Tier A

Cosmic age T0 cos(7·π/48)=13.81 Gyr

Planck 13.797±0.023, 0.6 σ

Headline age from three structural inputs

Time/cosmic-age row Anchor: score-012
#013Tier A

Global coherent-mass ceiling audit

NOT DERIVED: legal K-address states give Btotal=K

The former mass-only prediction is retired unless a separate cross-address no-stacking theorem is proved

A7U matter-wave row Anchor: score-013
#014Tier A

Singularity-free unitary black holes

GR recovered for r much larger than ltilde

Resolves the information paradox

A2 gravity row Anchor: score-014
#015Tier A

α from one stiffness κ

single-kernel holds; κ open

If κ is computed, α is geometry

alpha door row Anchor: score-015
#016Tier A

Single-kernel QED universality

χ2/dof about 0.58, pulls <0.5 σ

One kernel: aμ, HFS, Lamb, no retune

QED no-retune row Anchor: score-016
Tier P

Precision-metrology rows

back to ranked scorecard
#017Tier P

α−1=137.035999166

CODATA 137.035999177

Eight-figure match, no fit

alpha door row Anchor: score-017
#018Tier P

Electron ae=1.159652180592x10−3

exp …180(13)x10−3

About twelve-digit agreement

electron g-2 row Anchor: score-018
#019Tier P

Rydberg Rinf=10,973,731.568157

-0.0135 σ

Spectroscopy ruler from access map

Rydberg row Anchor: score-019
#027Tier P

αs(mZ)=0.118052

PDG 0.1179±0.0009, about 0.2 σ

QCD coupling from NICK kernel

QCD source row Anchor: score-027
#030Tier P

H 21-cm HFS 1420.405752 MHz

+0.0807 Hz

The astrophysics workhorse line

hyperfine row Anchor: score-030
#033Tier P

Cabibbo θC=13.0007 deg

PDG about 13.04 deg

Mixing from path-ordered CKM

CKM row Anchor: score-033
#034Tier P

Jarlskog J=3.16x10−5

(3.08±0.15)x10−5

CP invariant predicted

CKM row Anchor: score-034
#035Tier P

CKM Vus,Vcb,Vub

PDG ranges

Full mixing matrix from geometry

CKM row Anchor: score-035
#044Tier P

Scalar glueball 0++=1.731 GeV

lattice about 1.7

Falsifiable unconfirmed state

glueball row Anchor: score-044
#045Tier P

Glueballs 2++/0-+ = 2.400/2.583 GeV

lattice

Full glueball spectrum

glueball row Anchor: score-045
#046Tier P

Stefan-Boltzmann 5.670374x10−8

CODATA

Radiation law as throughput theorem

thermal/QED row Anchor: score-046
#047Tier P

Boltzmann finite-reservoir theorem

exact marginal; canonical-limit error bound; kB exact by SI convention

Conditional QTT support theorem with local-alphabet and equiprobability premises kept open

thermal/QED row Anchor: score-047
#050Tier P

Faraday 96485.33 C/mol

CODATA

Molar charge from dial winding

Faraday row Anchor: score-050
#051Tier P

sin2 θ12=0.3069

NuFIT

Solar angle as PMNS face

PMNS row Anchor: score-051
#052Tier P

sin2 θ13=0.02226

NuFIT

Reactor angle predicted

PMNS row Anchor: score-052
#053Tier P

HVP v50 BaBar publication-level execution

zaμ=+1.361/-0.594; χ2shape=57,765.6 or 85,030.3 for 139 dof

Scalar/shape split leaves method green and frozen lineshape red

HVP row Anchor: score-053
#054Tier P

HVP row-lift audit across KLOE/BESIII/CMD-3/BaBar

about 8.30-11.07% lift above strict minimal

Lab access-height disagreement made explicit

HVP row Anchor: score-054
#055Tier P

HVP source-access shape grammar

packet/camera/covariance gates green; present BaBar-resolved source lineshape red

Source/access test of g-2 rather than source retuning

HVP row Anchor: score-055
Tier B

Domain tests

back to ranked scorecard
#057Tier B

Cosmic dipole (Pantheon+)

>5 σ decline; isotropic LambdaCDM rejected

Anisotropic acceleration; major if real

cosmic-dipole route Anchor: score-057
#060Tier B

No superluminal tunneling

delays bounded by c

Caps a foundational dispute

wave-shadow row Anchor: score-060
Tier C

Corroborative/internal rows

back to ranked scorecard
#077Tier C

G(t) vs length-of-day

disputed 5.9-year signal

Corroborative lab-G

G-branch row Anchor: score-077
#087Tier C

Holonomy / loop-phase

internal consistency

Holonomy bookkeeping

holonomy row Anchor: score-087
#093Tier C

Meta-analysis / bias audit

methodology

Keeps scorecard honest

audit route Anchor: score-093
Record Anatomy

One Clean Row, Two Kept Failures

N1 is expanded as the template card: standard-language line, target, comparator, result, upstream rails, DOI, book anchor, falsifier, and gates. The two red cards beside it are not hidden footnotes.

Observed PullsAMBER source construction / conditional ratio line frozen / E4 JUNO holdout sealed
max |z| 2.24

Artian's Neutrino Ratio-Line Preregistration

Scope correction · 31 July 2026
The ratio identity is conditional; its finite source construction remains open.

Once the nonzero source vector (0, 1, ρ) is supplied, Δm231 / Δm221 = ρ2 follows exactly. The audit closes a necessary correction: common completed-bundle and A1 factors cancel, so they cannot by themselves supply a relative ρ.

A finite asymmetric branch pair and a finite certificate for the five-fold neutral completion remain amber gates. The frozen JUNO target remains a separate observational test of the conditional line.

Read the A1 neutral-branch audit · 10.5281/zenodo.21721466

The sealed numerical target is the scale-free conditional line Δ m231 / Δ m221 = ρν2 = π2·(2+√(2)) = 33.69693720145647… . The 31 July audit confirms this algebra only after the nonzero source vector is supplied; it does not yet certify the finite source event that makes ρ survive as a relative factor. The target remains frozen before the next qualifying JUNO release and is tested by profiling one common mass-squared scale, not by fitting the ratio to the laboratory gaps.

In standard language
The QTT conditional identity is Δ m231 / Δ m221 = π2·(2+√(2)) once the nonzero source vector is supplied. A common source-to-laboratory scale cancels from this ratio exactly; common completed-bundle and A1 factors do as well. The primary test profiles the common scale and judges only the frozen slope. The stronger fixed absolute point remains a separate nested test.
Theory-side sensitivity
No absolute ruler or universal multiplicative readout factor enters the ratio. The verdict is sensitive to the atmospheric-gap convention, the published joint likelihood/covariance, and any genuinely flavor-nonuniversal transport. The latter is absent from this seal and may not be invented after the result.
QTT archived
2026-07-16 under concept DOI 10.5281/zenodo.21394536
Comparator released
Pre-seal context: NuFIT 6.1 public normal-ordering profiles and JUNO's first 59.1-day solar-parameter result. Holdout: first materially expanded post-deposit JUNO solar release (Stage S) and first qualifying post-deposit joint solar-atmospheric likelihood/covariance (Stage J).
Upstream rails
ρνcos(π/8)universal transport cancellationprofiled common scalesealed JUNO Stage S/Jabsolute LIA point
Sector
Neutrino / LIA family-rank
Concept under test
Once the nonzero source vector is supplied, universal source-to-laboratory transport multiplies both mass-squared gaps by the same Zν2 and therefore cancels exactly from their ratio. Common completed-bundle and A1 factors cancel as well, so the finite asymmetric source event and five-fold neutral completion remain open construction gates. The fixed absolute LIA point is a stronger nested hypothesis and is reported separately; a flavor-nonuniversal transport is not part of this seal and cannot be introduced after seeing the residual.
Observable / dataset
Current NuFIT 6.1 normal-ordering profiles give Δ χ2 = 0.187708 and 0.387921 on the frozen ratio line. The first JUNO solar-coordinate result separately places the fixed source value Δ m221=7.231516396661×10−5 eV2 under +2.237363 σ strain. Stage J waits for the first post-deposit JUNO joint solar-atmospheric likelihood or covariance sufficient to test the line.
QTT target
ρν=2·π·cos(π/8); Δ m231 / Δ m221 = ρν2 = 4·π2·cos2(π/8) = 33.69693720145647…
Result / sigma
AMBER finite source construction / current ratio-line compatibility: qρ=0.187708 / 0.387921 on the two public NuFIT 6.1 normal-ordering variants. E4 SEALED: qρ≥9 is the preregistered one-degree-of-freedom falsifier and qρ≥25 is the separate decisive threshold. AUDIT/YELLOW absolute point: first JUNO solar-coordinate pull +2.237363 σ; no joint covariance means no joint verdict.
Book anchor
QTT Main Book v10.01, pp. 1195-1196 and compact ledger p. 1252; sealed JUNO preregistration concept DOI 10.5281/zenodo.21394536; neutrino family-rank derivation concept DOI 10.5281/zenodo.20571452; neutral-branch audit concept DOI 10.5281/zenodo.21721466.
Next check / falsifier
Execute Stage S on the first materially expanded post-deposit JUNO solar-gap release. Execute Stage J only when a post-deposit JUNO joint solar-atmospheric likelihood, profile, or covariance is sufficient to test the frozen ratio line. Keep every source digit and threshold fixed; missing dependence information gives no joint verdict.
Pull history
The source derivation remains in concept DOI 10.5281/zenodo.20571452; the neutral-branch correction audit is concept DOI 10.5281/zenodo.21721466. Concept DOI 10.5281/zenodo.21394536 seals the exact ratio digits, absolute point, release qualifiers, likelihood statistic, no-retune firewall, and future consequence ledger before the qualifying JUNO holdout releases.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-07-16 under concept DOI 10.5281/zenodo.21394536
Reproduce / audit note
Recompute the frozen constant as π2·(2+√(2)). Under any universal transport milab=Zν·misrc, both gaps acquire the same factor Zν2 and their ratio remains exactly unchanged. Profile one positive common scale along the line (a,ρν2·a) in the released joint likelihood; do not set a missing correlation to zero and do not use observed gaps to rewrite ρν.
Falsification and Erratanegative audit
failure record

H1 Out-of-Sample Lensing Failure

The H1 record is kept visible because a serious observation map must show failed tests as first-class records.

In standard language
This is a preserved failed out-of-sample lensing route. Its job is provenance and falsifiability, not rescue.
Theory-side sensitivity
Sensitivity is historical: the record documents what failed or was corrected, not a live fitted rescue.
QTT archived
2026-05-09 under concept DOI 10.5281/zenodo.20095338
Comparator released
Failure record published 2026-05-09.
Upstream rails
prediction firewallMACS J0025El Gordo
Sector
Lensing / negative audit
Concept under test
Falsifiability of the QTT cluster-lensing program.
Observable / dataset
MACS J0025 and El Gordo out-of-sample cluster-lensing tests.
QTT target
Prediction maps built before observed κ/γ residual verdicts.
Result / sigma
Failure confirmed and preserved as an audit record, not reworded into a theorem.
Book anchor
QTT Main Book v10.01, compact ledger p. 1253; public H1 DOI record carries the failure audit.
Source links
Next check / falsifier
Future cluster tests should preserve the same prediction-before-residual firewall.
Enumeration card
Legal space
Not a discovery enumeration; this is a preserved failed route or negative audit.
Gates
Failure/erratum status stays visible and cannot be upgraded by prose.
Survivors
No theorem survivor claimed.
Timestamp
2026-05-09 under concept DOI 10.5281/zenodo.20095338
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Falsification and Errataerratum / failed route
failed route

Equation 601 Failed-Route Audit

Equation 601 remains on the Observatory so the corpus does not hide its discarded paths.

In standard language
This is a failed equation route kept in the public ledger. It should be cited as an erratum/audit object only.
Theory-side sensitivity
Sensitivity is historical: the record documents what failed or was corrected, not a live fitted rescue.
QTT archived
2026-05-02 under concept DOI 10.5281/zenodo.19982606
Comparator released
Failed-route report published 2026-05-02.
Upstream rails
erratumfailed routeaudit discipline
Sector
Errata / failed route
Concept under test
Erratum discipline: a failed equation route is not a theorem.
Observable / dataset
Published error/failed report.
QTT target
Keep visibly listed as audit/erratum, not as a claimed result.
Result / sigma
Failed route retained in the compact corpus ledger.
Book anchor
QTT Main Book v10.01, compact ledger p. 1253.
Source links
Next check / falsifier
Any future text citing the route must cite it as failed/audit only.
Enumeration card
Legal space
Not a discovery enumeration; this is a preserved failed route or negative audit.
Gates
Failure/erratum status stays visible and cannot be upgraded by prose.
Survivors
No theorem survivor claimed.
Timestamp
2026-05-02 under concept DOI 10.5281/zenodo.19982606
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Dependency Map

Upstream Rails Are Printed

The map makes correlation visible. Rows sharing ρ, Lambda3, α-edge, ABC/WV, or access-window rails are not presented as independent confirmations.

A7 horizon / information

1 linked record
Quick Scan

Sigma Ledger

Compact pull table for records that already carry an explicit pull, corridor, or printed observation comparator. Detailed context remains in the cards below.

max |z|
2.237
Pull detail
detail
The conditional ratio line has profiled Δ χ2=0.187708 / 0.387921 (equivalent one-parameter distances 0.4333 / 0.6228 σ). The finite asymmetric source event and five-fold neutral completion remain open construction gates. The separate fixed absolute point has a +2.237363 σ first-JUNO solar-coordinate pull. These are not independent primary tests and are not combined.
Pre-seal context: NuFIT 6.1 public normal-ordering profiles and JUNO's first 59.1-day solar-parameter result. Holdout: first materially expanded post-deposit JUNO solar release (Stage S) and first qualifying post-deposit joint solar-atmospheric likelihood/covariance (Stage J).
Book pages
QTT Main Book v10.01, pp. 1195-1196 and compact ledger p. 1252; sealed JUNO preregistration concept DOI 10.5281/zenodo.21394536; neutrino family-rank derivation concept DOI 10.5281/zenodo.20571452; neutral-branch audit concept DOI 10.5281/zenodo.21721466.
Record
Faraday Clock-Tilt Plateau
Observed Pulls
max |z|
0.240
Pull detail
detail
-0.24 σ
Published Faraday material plateaus; material source dates pending in machine ledger.
Book pages
QTT Main Book v10.01, pp. 1192-1195.
max |z|
Pull detail
detail
The printed 25.17 and 14.38 values are quadrature-combined quoted-uncertainty separations under a provisional independent-Gaussian interpretation. The source publications do not provide the full covariance or likelihood needed to call them formal discovery sigmas, so they are not entered in the Observatory σ-pull histogram. Their scientific role is high-separation retrodictive support for the joint A4-A7 dependency chain; the held-out four-cell test carries prospective prediction credit.
Discovery constructors: 2022 3-MCHO/Cu(643) and 2026 bifacial ladder. External historical lock: published heptahelicene opposite-sign comparison. Prospective comparator: a future frozen four-cell molecule-by-surface experiment or a disjoint mirror-transfer dataset.
Book pages
Finite Source-Graph paper v1.3: Log-Gram theorem and gain/serial/defect consequences pp. 10-13; empirical and burden ledgers pp. 16-24; theorem/premise cards pp. 25 and 28-29. QTT Main Book v10.01, A4-A7 anchors pp. 48, 80-82, 263-266, and 912-916.
max |z|
Pull detail
detail
no observed σ yet
Future matched CISS length/defect campaign. Ordinary transport comparators and every fitted coupling, contact, dephasing, normalization, branch, and selected window must be declared against the same held-out covariance.
Book pages
Sealed test v1.0: two-tier fork pp. 5-6, structural and current gates pp. 6-9, decision rules pp. 9-11, execution and axiom map pp. 12-13; parent theorem concept DOI 10.5281/zenodo.22084700.
Record
ABC/WV Baryon Invariant
Observed Pulls
max |z|
0.180
Pull detail
detail
0.18 σ
CMB/BBN physical-density comparator family; source release date pending in machine ledger.
Book pages
QTT Main Book v10.01, pp. 1208-1209 and compact ledger p. 1252.
max |z|
0.109
Pull detail
detail
Creation Ledger consolidation reports the ZAHRA sec(π/8) ratio at about +0.109 σ against the SH0ES/Planck branch ratio; no ΩΛ-versus-Planck σ row is claimed.
CMB/BAO/TRGB/Cepheid H0 ladder comparators; individual release dates pending in machine ledger.
Book pages
QTT Main Book v10.01, pp. 212-213 and 711-715; compact ledger p. 1252; Creation Ledger concept DOI 10.5281/zenodo.20633582.
Record
Passive-Host H0 Ladder Test
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet
Future or reprocessed distance-ladder host-environment split.
Book pages
Creation Ledger concept DOI 10.5281/zenodo.20633582; QTT Main Book v10.01, pp. 711-715.
Record
Artian's Time Framework
Structural Anchors
max |z|
Pull detail
detail
No numerical pull is assigned. This is a structural/source theorem: the A1/A7 completed-record row is kept distinct from A2 support and A3 source volume; v5.2 closes the typed-ledger correction, Quantized Now, the Time Tilt plus Creation Drift age bridge, no-past-rewrite, twin address-path, A2 proper-time metric shadow, weak-field/Schwarzschild clock readouts, quantized Lorentz finite-boost ledger, and retarded address-operator rows. The full A2 IR Einstein-field bridge is tracked separately in obs-a2-einstein-field.
No external comparator date; this row is an internal consistency and future-operator-kernel audit gate.
Book pages
Arrow-of-time concept DOI 10.5281/zenodo.20761499; QTT Main Book v10.01 A1/A7 event-order and persistence anchors, A2/A3 support and creation anchors, entropy, Creation Ledger, and measurement-record anchors.
max |z|
Pull detail
detail
No new σ is assigned. The row is a source-to-IR theorem plus a correction-map prediction: standard weak-field GR tests are inherited because the Einstein equation is recovered as the IR shadow; the QTT-specific future measurement is the finite-address count covariance and causal turn-on behavior.
Standard GR weak-field and radiative tests are inherited as IR-shadow checks; finite-address correction measurements remain future/source-access declared.
Book pages
A2 Einstein-field concept DOI 10.5281/zenodo.20763263; QTT Main Book v10.01 A2 endurance, G, proper-time, Einstein-Hilbert, and continuum-shadow anchors.
max |z|
Pull detail
detail
No numerical pull is assigned. The record closes the source-side denial of fundamental information loss and the Bekenstein-quarter count without invoking Hawking radiation as a source constructor. Any exterior thermal-looking flux is access phenomenology to be population-tested, not source proof.
No direct black-hole Page-curve comparator is claimed. The Page envelope, optional thermal exterior flux, and species-resolved S-matrix rows remain future access-population tests.
Book pages
Black-hole information concept DOI 10.5281/zenodo.20346916. Related anchors: A7U source concept DOI 10.5281/zenodo.20097247, entropy concept DOI 10.5281/zenodo.20045306, A2 Einstein-field concept DOI 10.5281/zenodo.20763263, Artian time concept DOI 10.5281/zenodo.20761499, and QTT Main Book v10.01 A2/A6/A7, entropy, access, horizon, Page envelope, and finite-core anchors.
max |z|
Pull detail
detail
No QTT-specific deviation σ is assigned. The record recovers low-density electromagnetic and gravitational AB phases while declaring a high-load A6 phase-density population as the future discriminator.
Textbook electromagnetic AB and gravitational/proper-time AB experiments are consistency checks; a source-clean high-load AB apparatus remains future.
Book pages
AB holonomy concept DOI 10.5281/zenodo.20772090; A2 field concept DOI 10.5281/zenodo.20763263; Hamiltonian concept DOI 10.5281/zenodo.20484906.
Record
A2 Blind Tabletop Gravity Tests
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No σ is assigned. Version 2.0 closes prospective eligibility and verdict governance while apparatus-specific numerical sensitivity, a populated packet, and laboratory execution remain pending.
Future blinded atom-interferometry/source-mass or mesoscopic-source execution after all regime, ordinary-model, artifact, reversal, covariance, power, and chronology gates pass.
Book pages
Blind tabletop concept DOI 10.5281/zenodo.20772326; experimental-verdict governance concept DOI 10.5281/zenodo.21775175; related AB holonomy concept DOI 10.5281/zenodo.20772090; A2 field concept DOI 10.5281/zenodo.20763263.
Record
A1 Physical-Terminal Constructor Gate
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No observed σ is assigned. The paper closes an eligibility constructor, not a laboratory observation. It fixes the ordinary and QTT-A1 points only after all sixteen gates, including P16 ordinary-null completeness, pass.
Future qualified platform execution only. Existing Sagnac, Faraday, geometric-holonomy, quantum-clock, and flyby records are downstream platform candidates or capability references; none is promoted by this constructor into an observed A1 result.
Book pages
Physical-terminal concept DOI 10.5281/zenodo.21739215; QTT Main Book v10.01 pp. 48-52, 92, 235-237, 541-542, and 889-894; downstream concept families include quantum clock 10.5281/zenodo.21674815, geometric holonomy 10.5281/zenodo.21673340, flyby handshake 10.5281/zenodo.21674819, and the two-test preregistration 10.5281/zenodo.21376520.
Record
Monitored-Recurrence Reference-Switch Test
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No observed σ is assigned. The registered alternatives differ by 0.0761204674887133 in R and 0.0791735919101875 in log space. The 73.25-standard-error synthetic separation is a power and software-path certificate under simulated assumptions, not experimental evidence.
Future qualified blinded execution only. Existing first-detection, recurrence, quantum-control, oscillator, and clock-comparison experiments establish carrier or apparatus capabilities; none supplies the sealed terminal graph and reciprocal MRRS packet required for an A1 verdict.
Book pages
MRRS concept DOI 10.5281/zenodo.21703683; Physical Terminal concept DOI 10.5281/zenodo.21739215; A1-CHSH structural-identity concept DOI 10.5281/zenodo.19979594; QTT Main Book v10.01 pp. 158-160, 235-237, 445-449, 541-542, 552-553, and 560-562.
Record
Absolute-Clock Two-Test Preregistration
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No observed σ is assigned. Both experiments test the same pair of registered points, separated by 0.0761204674887133, but they are powered, sealed, and judged independently. The 4,000 synthetic classifications and Wilson lower bounds certify the analysis path only; they are not observations and cannot be combined with future data as evidence.
Future blinded execution of Test 1 and Test 2. Existing Sagnac, atom-chip, Faraday-rotation, and polarization-optics results establish instrument capabilities and controls only. They do not populate the registered four-history packets and are not counted as absolute-clock observations.
Book pages
Two-test preregistration concept DOI 10.5281/zenodo.21376520; Folman phase-spine concept DOI 10.5281/zenodo.20123495; Artian time concept DOI 10.5281/zenodo.20761499; radiative Lorentz-stability concept DOI 10.5281/zenodo.21301312; QTT Main Book v10.01 pp. 554-573, 916-920, and 1192-1196.
Record
A1 Geometric-Holonomy Reference-Switch Test
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No observed σ is assigned. The release fixes a 0.0761204674887133 separation between the ordinary and A1 targets, but its software certificate and historical-record audit are not laboratory evidence. The ordinary Berry phase is intentionally not reclassified as an A1 deviation.
Future qualified same-platform execution only. Bitter-Dubbers neutron and Tomita-Chiao fibre experiments are carrier references, not populated A1 comparators.
Book pages
Geometric-holonomy reference-switch concept DOI 10.5281/zenodo.21673340; QTT Main Book v10.01 pp. 159-172 and 889-892. Historical carrier references: Bitter and Dubbers (1987), Tomita and Chiao (1986), and the modern neutron reanalysis cited in the release package.
Record
A1 Quantum-Clock Reference-Switch Test
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No observed σ is assigned. The registered alternatives differ by 0.0761204674887133, while the packaged synthetic fixtures certify only that the fixed analysis path recovers ordinary and A1-generating packets. Existing quantum-clock experiments do not contain the required four physical τ/T terminal histories.
Future qualified same-clock execution only. Current delocalized-clock and quantum-clock-interferometry literature establishes carrier feasibility, not an A1 terminal-reference observation.
Book pages
Quantum-clock reference-switch concept DOI 10.5281/zenodo.21674815; QTT Main Book v10.01 pp. 47-52, 139-145, 159-172, 892, and 894; related two-test preregistration concept DOI 10.5281/zenodo.21376520.
Record
A1 Earth-Flyby Dual-Link Handshake
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No observed σ is assigned. The fixed coefficient alternatives are κA1=0 and 1. Synthetic packets recover their generating values and the package proves that a single ideal central-force flyby with a free inter-link offset is underidentified; neither fact is laboratory or mission evidence.
Future qualified mission or dedicated spacecraft execution only. Historical Anderson-type flyby anomalies and public DSN/radio-science archives lack simultaneous crossed T/τ histories and therefore receive no A1 verdict.
Book pages
Earth-flyby handshake concept DOI 10.5281/zenodo.21674819; QTT Main Book v10.01 pp. 47-52, 159-172, 480-483, 495-498, 892, and 894; Absolute-Clock Laboratory Discriminator Atlas concept DOI 10.5281/zenodo.21428128.
Record
Experimental Verdict Governance
Structural Anchors
max |z|
Pull detail
detail
No numerical pull is assigned because this is a governance theorem. It determines when a registered experiment may issue a theory verdict and how far a qualified failure may propagate.
Methodological comparator: preregistered and machine-verifiable experimental generations. No laboratory central value is used as a constructor.
Book pages
Experimental-verdict governance concept DOI 10.5281/zenodo.21775175; QTT Main Book v10.01 methodology and no-smuggling anchors; downstream A2 successor concept DOI 10.5281/zenodo.20772326 and HVP blind-lock successor concept DOI 10.5281/zenodo.20354458.
Record
Absolute-Clock Laboratory Discriminator Atlas
No-Retune and Internal Audits
max |z|
Pull detail
detail
The atlas reports apparatus/comparator indicators rather than one QTT clock pull: NIST 2026 versus BIPM14 is -4.0503 σ; NIST 2026 versus CODATA is -1.0525 σ; the two material-persistent torque-offset rows are nominally +6 and +7 σ. No absolute-clock significance is assigned until a derived waveform survives nuisance projection and transfer.
CODATA 2022, NIST Metrologia 2026, and the dated primary laboratory records listed in the atlas. The dual-clock Sagnac outcome remains future and sealed.
Book pages
Absolute-clock atlas concept DOI 10.5281/zenodo.21428128, especially pp. 6-16 and the falsification atlas; QTT Main Book v10.01 pp. 220-235, 480-498, 486-493, 554-573, 916-920, and 1192-1199.
Record
Finite Wave Packet and d'Alembert Shadow
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No laboratory pull is assigned before a lawful camera exists. The paper closes the complete bounded free packet sector, exact all-tick propagation, and the coefficient-free source residual while isolating laboratory transfer and nonlinear completion as separate targets.
Wave Dynamics v4.0 published 2026-08-31 under concept DOI 10.5281/zenodo.20723081; future source-clean, camera-qualified phase or time-of-flight comparators remain unopened audit gates.
Book pages
Wave-shadow concept DOI 10.5281/zenodo.20723081; QTT Main Book v10.01 A1/A4/A5/A6/A7 source-wave anchors and compact corpus ledger.
Record
A7U Molecular Visibility Transport
Predictions and CLEAR Tests
max |z|
Pull detail
detail
No detection pull is assigned. The transport record gives existing-data consistency rows after apparatus-block profiling; this is not a direct floor observation. Constant visibility loss is removed by Pib and cannot be counted as A7U evidence.
Existing Pedalino sodium-cluster, C70 collisional-decoherence, and C70 thermal-emission records are ordinary-decoherence/apparatus controls. The decisive comparator is a future same-apparatus, multi-mass visibility audit with independent Ab calibration, raw counts, covariance, and a locked nonconstant A7U-G transport shape.
Book pages
A7U molecular visibility concept DOI 10.5281/zenodo.20796924; upstream A7U distributed-bundle source concept DOI 10.5281/zenodo.20097247; QTT Main Book v10.01 A5/A6/A7, Access Law, Born/projection, and matter-wave source-access anchors.
max |z|
Pull detail
detail
No pull is assigned because no target-bearing packet has been opened. The source-only feasibility vector is sealed, but it is not the legal physical prediction until the ordinary complex Talbot kernel and every activation object are frozen independently of the target data.
Prospective execution only. The 2025 Pedalino public archive demonstrates platform readiness but does not supply the complete velocity-resolved visibility, covariance, ordinary-kernel, and path-provenance packet needed for retrospective adjudication.
Book pages
Fourth-Face Talbot-Lau preregistration concept DOI 10.5281/zenodo.22010227; A7U molecular visibility concept DOI 10.5281/zenodo.20796924; upstream A7U source concept DOI 10.5281/zenodo.20097247; QTT Main Book concept DOI 10.5281/zenodo.17527179.
max |z|
Pull detail
detail
R0 ≥ 5 and Rmove ≥ 5 required before target access; no observation yet
Future comparator not released yet.
Book pages
Two-configuration Test B concept DOI 10.5281/zenodo.22282943; single-configuration Test A concept DOI 10.5281/zenodo.22010227; A7U molecular visibility concept DOI 10.5281/zenodo.20796924; upstream A7U source concept DOI 10.5281/zenodo.20097247.
Record
Keystone Numerical Provenance Ledger
No-Retune and Internal Audits
max |z|
Pull detail
detail
63/63 checks; no combined σ
Comparator/source date not yet machine-pinned in the site ledger.
Book pages
QTT Main Book v10.01 constructor/no-smuggling/status anchors pp. 118, 198, 303, 599, 974, 1072, and 1114; Keystone Audit concept DOI 10.5281/zenodo.21141060.
max |z|
0.524
Pull detail
detail
Photon-edge theorem gives -0.523927 σ against CODATA 2022/NIST inverse α.
CODATA 2022 α corridor.
Book pages
QTT Main Book v10.01, scorecard/index pp. 7-8 and QED scorecard pp. 1037-1045; the photon-edge gate paper is the current theorem-grade citation for the α route.
Record
Precision QED No-Retune Window Suite
No-Retune and Internal Audits
max |z|
0.440
Pull detail
detail
V3.03 preserves the old prototype no-drift pulls, led by max |z| = 0.44 σ and χ2/dof about 0.58, restores the supporting technical matrix/appendix material, and still marks the full frozen-source covariance suite pending.
Prototype precision QED/CODATA windows inherited from V2; V3.03 technical-payload restoration published 2026-06-26.
Book pages
QTT Main Book v10.01, QED scorecard pp. 1037-1045 and compact master ledger p. 1248. Precision QED concept DOI 10.5281/zenodo.20121952; electron/Rydberg source packet concept DOI 10.5281/zenodo.20800371; photon-edge concept DOI 10.5281/zenodo.20628735.
Record
Rydberg Source Audit
No-Retune and Internal Audits
max |z|
0.013
Pull detail
detail
Electron/Rydberg v5.01 gives RQTT=10,973,731.568156838 m−1 and zR=-0.0135 σ after freezing Rector and the γ-W access exponent. Atomic-unit source propagation and hydrogen/QED row separation are closed; the full multi-row QED χ-square audit remains pending.
CODATA Rydberg corridor; v5.01 source-lab theorem published 2026-06-26.
Book pages
QTT Main Book v10.01, Koide/access pp. 1037-1045 and 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; charged-lepton rank concept DOI 10.5281/zenodo.20698191; photon-edge concept DOI 10.5281/zenodo.20628735.
Record
Rb/Cs Clock-Constellation Identifiability Gate
No-Retune and Internal Audits
max |z|
Pull detail
detail
no theory σ; identity branch residual +57.296978%
Comparator/source date not yet machine-pinned in the site ledger.
Book pages
QTT Main Book v10.01, source/readout and no-smuggling pp. 9-22, A4/A5-X/A6/A7 source anchors pp. 213-227 and 250-268, Hamiltonian and hyperfine contexts pp. 1037-1045 and 1094-1103. Hyperfine framework concept DOI 10.5281/zenodo.21309105; K2 caesium source-packet concept DOI 10.5281/zenodo.21249436; electron/Rydberg concept DOI 10.5281/zenodo.20800371.
Record
Source-Only SI Endpoint Bridge
No-Retune and Internal Audits
max |z|
Pull detail
detail
no σ; certificate pending
Comparator/source date not yet machine-pinned in the site ledger.
Book pages
QTT Main Book v10.01, source/readout and no-smuggling pp. 9-22, A5-X/A6/A7 pp. 250-268, Artian micro-ruler and G anchors pp. 56, 193, 238-241, 268, and scorecard pp. 126-128. Source-only SI endpoint concept DOI 10.5281/zenodo.20936013; hyperfine composition concept DOI 10.5281/zenodo.21309105.
max |z|
0.736
Pull detail
detail
+0.019 σ against direct 2023 measurement; +0.736 σ against CODATA 2022 audit.
Direct electron magnetic-moment measurement 2023; CODATA 2022 audit.
Book pages
QTT Main Book v10.01, pp. 1037-1045.
Record
Artian's HVP Source-Access Reference Framework
No-Retune and Internal Audits
max |z|
1.361
Pull detail
detail
Version 50.0 gives scalar pulls +1.361223 and -0.593757 for the historical and book-consistent source implementations. The covariance-orthogonal shape statistics are 57765.6144 and 85030.2611 for 139 degrees of freedom, versus the preregistered 95% gate 167.5143.
BaBar public two-pion row and published covariance, executed in HVP v50.0 on 2026-07-11.
Book pages
HVP source-access concept DOI 10.5281/zenodo.20732034; QTT Main Book v10.01 pp. 583-620, with two-universe ontology anchor p. 1262.
max |z|
0.462
Pull detail
detail
CMS -0.250 σ against 8.8 +1.2/-1.4 pb; ATLAS -0.404 σ against the nominal 9.0 ± 1.3 pb row; simple two-detector display combination -0.462 σ. ATLAS alternative fits are comparator context, not the nominal row.
CMS TOP-24-007 public page/arXiv 2503.22382, 28 March 2025; ATLAS-CONF-2025-008, 7 July 2025.
Book pages
QTT Main Book v10.01, pp. 1063-1072; toponium concept DOI 10.5281/zenodo.20123498.
Record
Toponium 14 TeV Scaling
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet
Future 13.6/14 TeV threshold comparator not released yet.
Book pages
QTT Main Book v10.01, pp. 1071-1072; v4.0 locked-prediction JSON inside the toponium release package.
Record
Test B Gas-Only Cluster Lensing
No-Retune and Internal Audits
max |z|
0.500
Pull detail
detail
s = 0.99 ± 0.02; 0.5 σ
Internal CLASH/HFF-style replay; independent external release still pending.
Book pages
QTT Main Book v10.01, pp. 1197-1198.
Record
Abell 2744 Shape-Locked Lensing Validation
No-Retune and Internal Audits
max |z|
Pull detail
detail
shape-locked; no single σ
Three reconstruction families; precise source dates pending in machine ledger.
Book pages
QTT Main Book v10.01, compact ledger p. 1253; public A2744 DOI record carries the reconstruction claim.
Record
Renewal Ledger Dark-Matter Branch
Structural Anchors
max |z|
6.900
Pull detail
detail
RAR comparison is deliberately not promoted into a green row: -6.9 σ stat-only and -0.57 σ full-envelope; cosmic-acceleration dipole is printed as a 3.9 σ tilted-observer pattern.
Renewal Ledger concept DOI 10.5281/zenodo.20643892, publication date 2026-06-11; comparator families include SPARC/RAR/BTFR, cluster lensing, and cosmic-acceleration dipole data.
Book pages
Renewal Ledger concept DOI 10.5281/zenodo.20643892; QTT Main Book v10.01, pp. 209-212, 535, 1209-1211, and 1253-1255.
Record
G1 Galaxy Morphology Curvature Law
Predictions and CLEAR Tests
max |z|
Pull detail
detail
qualitative many-σ support; no single-number fit
Renewal Ledger 2026-06-11 consolidation plus SPARC/Renzo-style morphology literature; quantitative no-retune QTT fit pending.
Book pages
Renewal Ledger concept DOI 10.5281/zenodo.20643892; QTT Main Book v10.01, pp. 535 and 1209-1211.
max |z|
Pull detail
detail
no σ yet
Future homogeneous high-z RAR/BTFR comparator; current citable branch is the Renewal Ledger concept DOI 10.5281/zenodo.20643892.
Book pages
Renewal Ledger concept DOI 10.5281/zenodo.20643892; QTT Main Book v10.01, pp. 535-538 and pp. 1210-1211.
max |z|
0.280
Pull detail
detail
v4.0 enumerates 37=2187 precision packets, excludes 2186, and leaves one active survivor. It prints s12=0.225042858584379, s23=0.042713531540749, s13=0.003708134796885, δ=1.147687258136975, ε23L=1/(192 ρ), the left-access CKM matrix, and a largest row-level entry pull about 0.28 σ.
Quark family-rank/CKM concept DOI family 10.5281/zenodo.20722978; CKM global-fit corridors remain the external comparator family and the correlated covariance packet is still pending.
Book pages
QTT Main Book v10.01, pp. 1127-1148 and scorecard pp. 126-128; quark family-rank concept DOI 10.5281/zenodo.20722978.
max |z|
1.500
Pull detail
detail
v4.0 closes the CKM precision packet but explicitly keeps the quark-mass source-word compiler and scheme/branch maps pending. Earlier birth-magnitude corridor numbers stay as context, not a final mass theorem.
Quark family-rank/CKM concept DOI family 10.5281/zenodo.20722978; PDG-style quark-mass corridors and scheme conventions remain external comparators.
Book pages
QTT Main Book v10.01, pp. 1127-1148 and scorecard pp. 126-128; quark family-rank concept DOI 10.5281/zenodo.20722978.
max |z|
0.188
Pull detail
detail
v3.7 charged-lepton audit: ze=+0.072 σ, zμ=+0.188 σ, zτ=-0.046 σ, χ2=0.042, max |z|=0.188 σ. Source-word survivor is (se,sμ,sτ)=(+,-,-) with (Ne,Nμ,Nτ)=(1,888,026,624,17,526,2,347).
NIST/CODATA charged-lepton mass-energy equivalents for e/μ and PDG τ corridor; charged-lepton family-rank concept DOI 10.5281/zenodo.20698191.
Book pages
QTT Main Book v10.01, Koide/access pp. 1037-1045 and 1094-1103; electron micro-rail pp. 1192-1198; scorecard pp. 126-128.
max |z|
0.144
Pull detail
detail
pi0 -0.122; π± -0.131; K+ -0.00017; K0 +0.0035; η +0.114; η' +0.144 σ
PDG pseudoscalar mass corridors.
Book pages
QTT Main Book v10.01, pp. 1094-1095 and scorecard pp. 126-128.
max |z|
0.100
Pull detail
detail
Σ <0.10; Xi <0.004; Ω +0.000009; proton/neutron CODATA <0.006 σ.
PDG/CODATA baryon and mass-energy corridors.
Book pages
QTT Main Book v10.01, pp. 1094-1103 and scorecard pp. 133-144.
Record
Hydrogen and Muonium Hyperfine Access Clocks
No-Retune and Internal Audits
max |z|
0.370
Pull detail
detail
Hydrogen residual +0.0807 Hz; muonium combined pull +0.37 σ.
Hydrogen 21 cm and muonium HFS spectroscopy comparators.
Book pages
QTT Main Book v10.01, pp. 1102-1103 and scorecard p. 144.
max |z|
0.038
Pull detail
detail
v <0.001; GF -0.0019; h(125) +0.038 σ.
PDG/electroweak Higgs and Fermi constant comparators.
Book pages
QTT Main Book v10.01, pp. 971-981, p. 1056, and scorecard p. 128.
max |z|
0.111
Pull detail
detail
αs +0.058; static-source string tension about -0.11 σ after the A6 v4.0 compact-color kernel chain locks √(σ3)=444.25315096 MeV; glueballs +0.013, +0.004, -0.049 σ.
PDG αs and lattice pure-gauge/string-tension comparator families; A6 compact-color kernel concept DOI 10.5281/zenodo.20744161.
Book pages
QTT Main Book v10.01, scorecard pp. 126-128; strong-coupling concept DOI 10.5281/zenodo.20625550; A6 half-share concept DOI 10.5281/zenodo.20744161.
max |z|
0.111
Pull detail
detail
√(σ3)QTT=444.25315096 MeV against the audit comparator 445(3)(6) MeV gives a pull of about -0.11 σ, with the comparator held strictly outside the constructor.
A6 Hadamard Center-Sheet Half-Share Theorem published 2026-06-18; static-source lattice/string-tension comparator family as cited in the paper.
Book pages
A6 half-share concept DOI 10.5281/zenodo.20744161. QTT Main Book v10.01 QCD/string/glue scorecard pp. 126-128 and color/QCD source anchors around pp. 1008-1020.
Record
QCD Sheet-Scale Downstream Prediction Packet
Predictions and CLEAR Tests
max |z|
Pull detail
detail
source values locked; downstream rows pending
Future source-access-pole maps, HVP row cards, ρ-width convention rows, chiral-scale audits, and pure-gauge glueball reruns.
Book pages
A6 half-share concept DOI 10.5281/zenodo.20744161; HVP source-access concept DOI 10.5281/zenodo.20732034; glueball concept DOI 10.5281/zenodo.20571454; QTT Main Book v10.01 pp. 583-620 and 1008-1020.
Record
Boundary Half-Share Rule Across Sectors
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet
Future sector papers and derivation audits.
Book pages
A6 half-share concept DOI 10.5281/zenodo.20744161; PMNS source-access concept DOI 10.5281/zenodo.20735493; QTT Main Book v10.01 A6/A7 boundary and PMNS anchors.
max |z|
Pull detail
detail
standard Born law recovered; no independent ontology selection
Standard Born-rule and higher-order-interference experimental literature; no single pull assigned.
Book pages
Born concept DOI 10.5281/zenodo.20118242; QTT Main Book v10.01 pp. 268, 435-438, and 1247.
Record
Newton G Six-Face Artian Ledger
Structural Anchors
max |z|
0.009
Pull detail
detail
The resolved photon-edge/Fermi face gives GA(γ H)=6.674301412456×10−11 m3 kg−1 s−2, zG=+0.009416 σ, but the Observatory keeps the dimensional-ruler guardrail active.
CODATA G branch with non-gravitational weak-scale anchor GF and photon-edge αQTT; independent non-G micro-ruler still pending.
Book pages
Newton/G concept DOI 10.5281/zenodo.20057430; QTT Main Book v10.01 compact G/endurance ledger anchors.
Record
Universal Endpoint-Gain Tier-K Preregistration
Predictions and CLEAR Tests
max |z|
Pull detail
detail
The printed 0.505839 ppm is an anchor-only target uncertainty, not a measurement residual. There is no observed pull, Bayes factor, or Tier-K evidence status until a post-freeze packet passes every eligibility gate.
Only qualified post-freeze G determinations count. Historical G values are ineligible as prospective evidence.
Book pages
Tier-K preregistration concept DOI 10.5281/zenodo.21955408; Newton/G concept DOI 10.5281/zenodo.20057430; A2 Einstein-field concept DOI 10.5281/zenodo.20763263.
max |z|
Pull detail
detail
No experimental QTT pull is assigned. The 17/17 and 24/24 values are reconstruction checks for the v1.2 standalone theorem and Observation as Access v8. The published external recovery numbers remain author-owned standard-QM results pending exact-array replication.
External preprint arXiv:2608.12803, accessed 2026-08-14; exact arrays/scripts pending from the authors. No target-bearing timing dataset opened.
Book pages
Completed-record framework concept DOI 10.5281/zenodo.21902886; Observation as Access concept DOI 10.5281/zenodo.20114403; QTT Main Book v10.01 A3, A5-X, A6, A7, Born/projection, entropy, and measurement-record anchors.
Record
Record-Fan-Out Timing-Envelope Blind Test
Predictions and CLEAR Tests
max |z|
5.000
Pull detail
detail
No observed σ is assigned. The 5-σ threshold and ≥0.95 power gate are prospective preregistration conditions, not achieved significance.
Future qualified circuit-QED execution and one physically distinct replication platform.
Book pages
Blind-test concept DOI 10.5281/zenodo.21902885; theorem concept DOI 10.5281/zenodo.21902886; Observation as Access concept DOI 10.5281/zenodo.20114403; QTT Main Book v10.01 finite-address, Born/projection, Access Law, and record anchors.
max |z|
Pull detail
detail
No observed σ is assigned. The 161/161 reconstruction and 1.11×10−16 maximum discrepancy qualify the external programmed dynamic-circuit archive only; they are not evidence for the registered unprogrammed timing consequence.
Future qualified dynamic-circuit timing holdout and independent record-technology replication. No target-bearing timing data were opened as of 2026-08-12.
Book pages
Dynamic-circuit extension concept DOI 10.5281/zenodo.21904993; parent blind-test concept DOI 10.5281/zenodo.21902885; source theorem concept DOI 10.5281/zenodo.21902886; Observation as Access concept DOI 10.5281/zenodo.20114403; QTT Main Book v10.01 finite-address, measurement-record, and access anchors.
max |z|
5.000
Pull detail
detail
No observed QTT σ is assigned. The external Q=0.516 and Favg=0.758 are author-owned standard-QM recovery results and are forbidden as timing targets. The 5-σ and ≥0.95 power values are prospective gates.
External preprint arXiv:2608.12803, accessed 2026-08-14; exact arrays/scripts pending. Future qualified carrier-deletion timing execution and independent replication remain prospective.
Book pages
Carrier-deletion extension concept DOI 10.5281/zenodo.21935062; parent blind-test concept DOI 10.5281/zenodo.21902885; theorem concept DOI 10.5281/zenodo.21902886; Observation as Access concept DOI 10.5281/zenodo.20114403.
max |z|
Pull detail
detail
No QTT-exclusive experimental σ is assigned. The 8,407/8,407 count is a deterministic reconstruction and theorem-audit receipt. It confirms the access-work architecture and source object without relabeling standard work data as a commutator observation.
Cho and Lee arXiv:2609.01303v1, submitted 2026-09-01T14:30:37Z, is the seventh external comparator and an independent qualification-method candidate. Its finite-library theorem and hardware rows are not QTT evidence.
Book pages
Observation as Access Version 11.01 under concept DOI 10.5281/zenodo.20114403; same-central-effect preregistration concept DOI 10.5281/zenodo.22236546; Cho and Lee arXiv:2609.01303v1; QTT Main Book v10.01 Access-Law, A1, A5-X, A6, A7, Born/projection, entropy, and completed-record anchors.
max |z|
Pull detail
detail
No observed σ is assigned. The complete complex target and covariance order are frozen; prospective power and the final separation from both registered surfaces must be certified at Stage 1 before unblinding.
Future qualified circuit-QED execution. Existing Maxwell-demon work experiments and continuous-variable geometric-phase experiments establish component feasibility and ordinary comparators only; they do not populate this same-route blinded surface.
Book pages
Same-central-effect preregistration concept DOI 10.5281/zenodo.22236546; Observation as Access concept DOI 10.5281/zenodo.20114403; QTT Main Book v10.01 A1 terminal ordering, A5-X completed record, A6 finite capacity, A7 closure, and Access-Law anchors.
Record
Access-Law Timing Tomography
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet
Future timing-tomography comparator.
Book pages
QTT Main Book v10.01, pp. 181, 189, 531, 1250; index notes pp. 868 and 1135.
Record
HVP Prospective Blind-Lock Executor
Predictions and CLEAR Tests
max |z|
5.000
Pull detail
detail
No central-value σ is assigned. The inherited 2-σ candidate corridor remains unchanged; Version 2.0 adds a prospective 5-σ branch-exclusion threshold only after integrity and power gates pass.
Future withheld HVP row-card comparator. No present HVP central value was opened in the executor release.
Book pages
HVP blind-lock concept DOI 10.5281/zenodo.20354458; experimental-verdict governance concept DOI 10.5281/zenodo.21775175; HVP source-access concept DOI 10.5281/zenodo.20732034; QTT Main Book v10.01 pp. 584-620 and p. 1257.
Record
Photon-Edge Noise/Heat/Cross-Power Stress Test
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet
Future same-device noise/heat/cross-power comparator.
Book pages
QTT Main Book v10.01, pp. 114-117 and pp. 7123-7125; index note p. 1132.
Record
hhhh Quartic Higgs Self-Coupling
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet
Future precision triple/quartic Higgs collider comparator.
Book pages
QTT Main Book v10.01, pp. 991-994; index notes pp. 1062 and 1125.
Record
Laboratory Antimatter Null-Access
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet; compatible data
BASE/ALPHA-era tests compatible; decisive intrinsic comparator future-facing.
Book pages
QTT Main Book v10.01, pp. 507 and index notes pp. 861, 1126.
Record
PMNS Source-Access Reference Framework v5.0
Predictions and CLEAR Tests
max |z|
5.820
Pull detail
detail
v5.0 keeps the 36-word finite source enumeration with one active source survivor and adds the source-side Cabibbo bridge sCbridge=0.225042858584379. The source face gives sin2 θ12=0.306880189272, sin2 θ13=0.022257215708, sin2 θ23=0.557296543843, δPMNS=π, and JPMNS=0. NuFIT 6.1 checkpoint gives θ12 -0.29 σ, θ13 -0.40 σ, upper-octant θ23 -0.28 σ, while the lower-octant SK-inclusive packet remains a +5.82 σ stress row.
NuFIT 6.0 normal-ordering rows and NuFIT 6.1/JUNO checkpoint as reported in the PMNS source-access reference framework v5.0; decisive DUNE/Hyper-K/JUNO/atmospheric likelihood rows remain future audit gates.
Book pages
PMNS source-access concept DOI 10.5281/zenodo.20735493; QTT Main Book v10.01 pp. 158-162, 1113-1114, 1134-1138.
Record
Kerr Constant from Artian Geometry
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet
Future material Kerr-ratio audit.
Book pages
DOI record live 2026-06-05; book-page integration pending after v10.01.
Record
Color-Closure Confinement
Predictions and CLEAR Tests
max |z|
Pull detail
detail
no σ yet
Future declared lattice/hadron stress class.
Book pages
DOI record live 2026-06-06; book-page integration pending after v10.01.
Record
H1 Out-of-Sample Lensing Failure
Falsification and Errata
max |z|
Pull detail
detail
failure record
Failure record published 2026-05-09.
Book pages
QTT Main Book v10.01, compact ledger p. 1253; public H1 DOI record carries the failure audit.
Record
Equation 601 Failed-Route Audit
Falsification and Errata
max |z|
Pull detail
detail
failed route
Failed-route report published 2026-05-02.
Book pages
QTT Main Book v10.01, compact ledger p. 1253.
Observed Pulls

Observed Pulls

Rows with public comparators and a printed pull, corridor, or observed-pattern statement. Structural anchors without numeric pulls are kept out of this class. 16 Observatory records in this category. Each card states the concept under test, observed quantity, QTT target, result, book page anchor, and next falsifier or check.

Observed PullsAMBER source construction / conditional ratio line frozen / E4 JUNO holdout sealed
max |z| 2.24

Artian's Neutrino Ratio-Line Preregistration

Scope correction · 31 July 2026
The ratio identity is conditional; its finite source construction remains open.

Once the nonzero source vector (0, 1, ρ) is supplied, Δm231 / Δm221 = ρ2 follows exactly. The audit closes a necessary correction: common completed-bundle and A1 factors cancel, so they cannot by themselves supply a relative ρ.

A finite asymmetric branch pair and a finite certificate for the five-fold neutral completion remain amber gates. The frozen JUNO target remains a separate observational test of the conditional line.

Read the A1 neutral-branch audit · 10.5281/zenodo.21721466

The sealed numerical target is the scale-free conditional line Δ m231 / Δ m221 = ρν2 = π2·(2+√(2)) = 33.69693720145647… . The 31 July audit confirms this algebra only after the nonzero source vector is supplied; it does not yet certify the finite source event that makes ρ survive as a relative factor. The target remains frozen before the next qualifying JUNO release and is tested by profiling one common mass-squared scale, not by fitting the ratio to the laboratory gaps.

In standard language
The QTT conditional identity is Δ m231 / Δ m221 = π2·(2+√(2)) once the nonzero source vector is supplied. A common source-to-laboratory scale cancels from this ratio exactly; common completed-bundle and A1 factors do as well. The primary test profiles the common scale and judges only the frozen slope. The stronger fixed absolute point remains a separate nested test.
Theory-side sensitivity
No absolute ruler or universal multiplicative readout factor enters the ratio. The verdict is sensitive to the atmospheric-gap convention, the published joint likelihood/covariance, and any genuinely flavor-nonuniversal transport. The latter is absent from this seal and may not be invented after the result.
QTT archived
2026-07-16 under concept DOI 10.5281/zenodo.21394536
Comparator released
Pre-seal context: NuFIT 6.1 public normal-ordering profiles and JUNO's first 59.1-day solar-parameter result. Holdout: first materially expanded post-deposit JUNO solar release (Stage S) and first qualifying post-deposit joint solar-atmospheric likelihood/covariance (Stage J).
Upstream rails
ρνcos(π/8)universal transport cancellationprofiled common scalesealed JUNO Stage S/Jabsolute LIA point
Sector
Neutrino / LIA family-rank
Concept under test
Once the nonzero source vector is supplied, universal source-to-laboratory transport multiplies both mass-squared gaps by the same Zν2 and therefore cancels exactly from their ratio. Common completed-bundle and A1 factors cancel as well, so the finite asymmetric source event and five-fold neutral completion remain open construction gates. The fixed absolute LIA point is a stronger nested hypothesis and is reported separately; a flavor-nonuniversal transport is not part of this seal and cannot be introduced after seeing the residual.
Observable / dataset
Current NuFIT 6.1 normal-ordering profiles give Δ χ2 = 0.187708 and 0.387921 on the frozen ratio line. The first JUNO solar-coordinate result separately places the fixed source value Δ m221=7.231516396661×10−5 eV2 under +2.237363 σ strain. Stage J waits for the first post-deposit JUNO joint solar-atmospheric likelihood or covariance sufficient to test the line.
QTT target
ρν=2·π·cos(π/8); Δ m231 / Δ m221 = ρν2 = 4·π2·cos2(π/8) = 33.69693720145647…
Result / sigma
AMBER finite source construction / current ratio-line compatibility: qρ=0.187708 / 0.387921 on the two public NuFIT 6.1 normal-ordering variants. E4 SEALED: qρ≥9 is the preregistered one-degree-of-freedom falsifier and qρ≥25 is the separate decisive threshold. AUDIT/YELLOW absolute point: first JUNO solar-coordinate pull +2.237363 σ; no joint covariance means no joint verdict.
Book anchor
QTT Main Book v10.01, pp. 1195-1196 and compact ledger p. 1252; sealed JUNO preregistration concept DOI 10.5281/zenodo.21394536; neutrino family-rank derivation concept DOI 10.5281/zenodo.20571452; neutral-branch audit concept DOI 10.5281/zenodo.21721466.
Next check / falsifier
Execute Stage S on the first materially expanded post-deposit JUNO solar-gap release. Execute Stage J only when a post-deposit JUNO joint solar-atmospheric likelihood, profile, or covariance is sufficient to test the frozen ratio line. Keep every source digit and threshold fixed; missing dependence information gives no joint verdict.
Pull history
The source derivation remains in concept DOI 10.5281/zenodo.20571452; the neutral-branch correction audit is concept DOI 10.5281/zenodo.21721466. Concept DOI 10.5281/zenodo.21394536 seals the exact ratio digits, absolute point, release qualifiers, likelihood statistic, no-retune firewall, and future consequence ledger before the qualifying JUNO holdout releases.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-07-16 under concept DOI 10.5281/zenodo.21394536
Reproduce / audit note
Recompute the frozen constant as π2·(2+√(2)). Under any universal transport milab=Zν·misrc, both gaps acquire the same factor Zν2 and their ratio remains exactly unchanged. Profile one positive common scale along the line (a,ρν2·a) in the released joint likelihood; do not set a missing correlation to zero and do not use observed gaps to rewrite ρν.
Observed Pullsobserved, systematics dominated
max |z| 0.24

Faraday Clock-Tilt Plateau

The Faraday plateau is treated as an independent, material-systematics-limited readout of the same π/8 clock factor that appears in the neutrino ratio.

In standard language
In mainstream terms, this card compares a frozen QTT target for Wavelength-independent Faraday plateau in TGG and Dy2O3-style materials. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Comparator released
Published Faraday material plateaus; material source dates pending in machine ledger.
Upstream rails
cos(π/8)Faraday plateaumaterial systematics
Sector
Optics / clock projection
Concept under test
Capacity holonomy of the Faraday magnetic plateau reading Iclk = cos(π/8).
Observable / dataset
Wavelength-independent Faraday plateau in TGG and Dy2O3-style materials.
QTT target
Iclk(Faraday) should match cos(π/8) = 0.9238795325.
Result / sigma
Iclk(Faraday) = 0.90 ± 0.10, z ≈ -0.24 σ; the book labels it promising but systematics dominated.
Book anchor
QTT Main Book v10.01, pp. 1192-1195.
Source links
Next check / falsifier
A cleaner material series must reduce plateau systematics without fitting the clock factor.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Reproduce / audit note
Compute Iclk(Faraday) from the declared plateau extraction, then compare to cos(π/8) without moving the clock factor.
Observed PullsHIGH-SEPARATION ODD-SECTOR ACTIVATION / LOG-GRAM AMPLITUDE FUNCTIONAL CLOSED / MATERIAL PACKET OPEN
25.17 / 14.38 quoted-uncertainty units

Chiral Spin Source-Graph and Mirror-Shape Theorems

Version 1.3 retains the finite source-graph, normalized-shape, odd-sector activation, and crystallographic reflection theorems, then closes the amplitude functional of any independently constructed positive two-channel transfer packet. Common gain cancels, common-rail serial packets add in Log-Gram rapidity, and independently certified sign-reversing defects subtract by signed count. The chemistry-specific material packet remains open and is now targeted by a separate sealed molecular-length/defect test.

In standard language
In mainstream terms, this card compares a frozen QTT target for Published bifacial-ladder spin-polarization rows, independent heptahelicene opposite-sign rows, digitized ladder energy traces, and vector-resolved 3-MCHO/Cu(643) spin contrast. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Structural row: no σ or theory error bar is assigned until a numerical comparator and covariance packet are declared.
QTT archived
2026-08-25 under concept DOI 10.5281/zenodo.22084700
Comparator released
Discovery constructors: 2022 3-MCHO/Cu(643) and 2026 bifacial ladder. External historical lock: published heptahelicene opposite-sign comparison. Prospective comparator: a future frozen four-cell molecule-by-surface experiment or a disjoint mirror-transfer dataset.
Upstream rails
A4 signed J reversalA5 completed interface eventA6 finite graph packetA7 reversal-orbit closurefinite character modulenormalized energy shapevector Log-Gram amplitudesealed length/defect test
Sector
Chiral spin filtering / finite source graphs
Concept under test
A4 supplies the signed real-J reversal character; A5 types molecule, surface, transmitted electron, and record as one completed event; A6 makes the legal event packet finite; A7 closes the packet under every molecular and surface reversal before character projection. Under those typed consequences the source space is a finite permutation module, and the chirality-odd multiplicity is counted by stabilizer-compatible graph orbits.
Observable / dataset
Published bifacial-ladder spin-polarization rows, independent heptahelicene opposite-sign rows, digitized ladder energy traces, and vector-resolved 3-MCHO/Cu(643) spin contrast.
QTT target
Finite graph-orbit multiplicity fixes the number of chirality-odd source generators. A one-generator odd sector through one common scalar access kernel fixes one normalized mirror shape. For Q=M Mdagger with log Q=α I+r.σ, the unique output is P=tanh(|r|) r/|r|; positive common gain changes α only. The sealed companion test asks whether independently certified molecular completions add in r and whether the stronger fixed local increment 1/[4 π cos(π/8)] survives with zero target-fitted amplitude.
Result / sigma
The bifacial-ladder central values remain separated by 25.17 quadrature-combined quoted-uncertainty units and the independent heptahelicene row by 14.38 units under their printed-error conventions; these are high-separation activation rows, not formal full-covariance discovery sigmas. The digitized ladder traces have descriptive mirror-shape cosine 0.9976. Version 1.3 proves the amplitude functional but does not infer the missing raw covariance or set Neff=16 from a structural visualization. The new length/defect outcome remains observation pending.
Book anchor
Finite Source-Graph paper v1.3: Log-Gram theorem and gain/serial/defect consequences pp. 10-13; empirical and burden ledgers pp. 16-24; theorem/premise cards pp. 25 and 28-29. QTT Main Book v10.01, A4-A7 anchors pp. 48, 80-82, 263-266, and 912-916.
Next check / falsifier
Execute the separately sealed Log-Gram length/defect protocol under concept DOI 10.5281/zenodo.22092628. Independently certify molecular count and defect fraction before spin unblinding, retain raw currents and full covariance, and keep the theorem-supported serial tier separate from the fixed-coefficient conjecture tier.
Pull history
The graph and shape theorem forms were developed after inspecting the Cu and bifacial-ladder patterns under the QTT Newton Protocol. Those rows remain discovery constructors forever. Version 1.3 was published on 2026-08-25 under concept DOI 10.5281/zenodo.22084700 with the vector Log-Gram amplitude functional, gain invariance, common-rail serial composition, signed-defect law, raw-current covariance coordinate, and a separately deposited prospective test.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-08-25 under concept DOI 10.5281/zenodo.22084700
Reproduce / audit note
Use concept DOI 10.5281/zenodo.22084700. Verify the finite K=Z2 x Z2 action, stabilizer count, common-kernel shape theorem, Log-Gram reconstruction, common-gain invariance, basis covariance, common-rail addition, signed-defect identity, raw-current gradient, passive bound, singular limit, digitized discovery audits, and four-cell rank checks. Do not turn the displayed 16-mer into Neff or use plotted amplitudes to write the fixed coefficient.
Observed Pullsobserved cosmology lock
max |z| 0.18

ABC/WV Baryon Invariant

The baryon number-lock is recorded as a physical-density comparison after the book separates the source baryon fraction from lab/CMB projection.

In standard language
In mainstream terms, this card compares a frozen QTT target for CMB/BBN physical baryon density corridor. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-05-05 under concept DOI 10.5281/zenodo.20042421
Comparator released
CMB/BBN physical-density comparator family; source release date pending in machine ledger.
Upstream rails
ABC/WVΩbprojection map
Sector
Cosmology / baryon ledger
Concept under test
ABC/WV creation ledger, ΩbABC = 1/18, and the lab/CMB projection map.
Observable / dataset
CMB/BBN physical baryon density corridor.
QTT target
18 ΩbABC (Hτ T0ABC)2 ≈ 1, with ΩbABC = 1/18 and lab projection near Ωblab ≈ 0.0493.
Result / sigma
Book obsnote reports ωb / Ωb at about 0.18 σ in the clean physical-density form.
Book anchor
QTT Main Book v10.01, pp. 1208-1209 and compact ledger p. 1252.
Source links
Next check / falsifier
Keep source ΩbABC and lab Ωblab separate; do not compare the raw 1/18 source number directly to a lab/CMB number.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-05-05 under concept DOI 10.5281/zenodo.20042421
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Observed Pullssector theorem / observed branch
max |z| 0.109

Creation Ledger / ZAHRA Hubble Branch

The current consolidation record treats late-time acceleration as a Creation Ledger projection effect, not a fitted dark-energy fluid, and keeps the Hubble branch as a two-clock readout.

In standard language
In mainstream terms, this card compares a frozen QTT target for CMB, BAO, TRGB, and Cepheid H0 ordering. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-06-10 under concept DOI 10.5281/zenodo.20633582
Comparator released
CMB/BAO/TRGB/Cepheid H0 ladder comparators; individual release dates pending in machine ledger.
Upstream rails
A3 Creation Ledgerexact vacuum identitycoasting triadlate/early branch
Sector
Cosmology / Creation Ledger
Concept under test
A3 Creation Ledger, exact vacuum identity, coasting triad, and z-ABC Hubble Ratio Anchor; Hlate / Hearly = sec(π/8).
Observable / dataset
CMB, BAO, TRGB, and Cepheid H0 ordering.
QTT target
CMB < BAO < TRGB < Cepheid, with the late/early ratio governed by sec(π/8); triad 63.493 → 68.724 / 69.734 / 70.855 km s−1 Mpc−1, with a motivated star-forming offset near 73.03.
Result / sigma
The Creation Ledger paper verifies the triad digits and reports the atlas-level ZAHRA ratio sec(π/8) against SH0ES/Planck at about +0.109 σ. It explicitly does not claim an ΩΛ-versus-Planck σ row.
Book anchor
QTT Main Book v10.01, pp. 212-213 and 711-715; compact ledger p. 1252; Creation Ledger concept DOI 10.5281/zenodo.20633582.
Next check / falsifier
Sharper environment-split ladder data should test whether passive-host distance ladders return systematically lower H0 than star-forming-host samples.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-06-10 under concept DOI 10.5281/zenodo.20633582
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20633582. Reproduce the triad 63.493 → 68.724 / 69.734 / 70.855, compare the late/early branch ratio through sec(π/8), and keep the ε amplitude labelled as FRW-consistency fixed until a ledger-side derivation exists.
Observed Pullsphoton-edge theorem / observed audit
max |z| 0.524

Fine-Structure Constant: Photon-Edge Gate

The current α citation is the photon-edge gate theorem: QTT isolates the bulk photon house and neutral projected half-loop, then proves the residual five-rail edge as a finite source object before any CODATA audit.

In standard language
A fine-structure-constant theorem produces a frozen inverse-α value, then the value is compared to CODATA. The comparison is a precision QED edge test, not a fit to the CODATA number.
Theory-side sensitivity
Dimensionless inverse-α row. Theory sensitivity is the photon-edge rail proof and residual theorem; comparator sensitivity is CODATA's published uncertainty.
QTT archived
2026-06-10 under concept DOI 10.5281/zenodo.20628735
Comparator released
CODATA 2022 α corridor.
Upstream rails
α edgefive-rail residualA7 loopphoton house
Sector
QED / photon edge
Concept under test
Photon house 8 + neutral projected half-loop ρ/2 + residual five-rail photon-edge eigenvalue λγ.
Observable / dataset
CODATA fine-structure constant.
QTT target
αQTT−1 = 137.035999165998.
Result / sigma
The photon-edge gate theorem reports λγ = 0.00252517226324577 and αQTT−1 = 137.035999165998, giving -0.523927 σ against CODATA 2022/NIST 137.035999177(21).
Book anchor
QTT Main Book v10.01, scorecard/index pp. 7-8 and QED scorecard pp. 1037-1045; the photon-edge gate paper is the current theorem-grade citation for the α route.
Next check / falsifier
Falsify by producing an axiom-legal alternative residual complex in the declared grammar, a legal sixth rail, a denominator/sign recount error, or a no-retune breakdown in downstream QED/Rydberg/impedance readouts.
Enumeration card
Legal space
Five-rail photon-edge residual theorem; the legal rails are printed in the source theorem.
Gates
Alpha-edge residual, A7 loop, photon-house, and no-retune firewall before CODATA comparison.
Survivors
One inverse-α expression is carried to CODATA; alternative candidate expressions are not silently promoted.
Timestamp
Concept DOI 10.5281/zenodo.20628735 is the current theorem-grade route.
Reproduce / audit note
Use the concept DOI 10.5281/zenodo.20628735. Keep αQTT−1 = 137.035999165998 fixed, then compute z = (αQTT−1 - αCODATA−1)/σCODATA. The older Artian-door DOI family 10.5281/zenodo.20330268 remains a predecessor, not the current theorem-grade citation.
Observed Pullsphoton-edge readout
max |z| 0.736

Electron g-2 as Photon-Edge Magnetic Readout

The electron anomaly is placed downstream of the frozen α edge, which is the scientifically important ordering.

In standard language
The electron magnetic anomaly is a downstream readout after the photon-edge and electron source packet have been frozen. It is a comparator row, not an input to the source construction.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Direct electron magnetic-moment measurement 2023; CODATA 2022 audit.
Upstream rails
α edgemagnetic readoutelectron anomaly
Sector
QED / magnetic readout
Concept under test
Magnetic readout of the frozen photon-edge α, not an α calibrant.
Observable / dataset
Direct 2023 electron magnetic-moment measurement; CODATA 2022 as a separate audit.
QTT target
aeQTT = 1.159652180592467×10−3 from the frozen αλ rail.
Result / sigma
+0.019 σ against the direct measurement; +0.736 σ against CODATA 2022 as a separate audit.
Book anchor
QTT Main Book v10.01, pp. 1037-1045.
Source links
Book anchor only
Next check / falsifier
Keep the causal order: α edge first, electron anomaly second.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Observed PullsGREEN corridor match / AMBER normalization audit
max |z| 0.462

Top-Antitop Threshold Beam-Access Theorem

The v4.0 row compares the printed QTT beam-access cross-section to the official CMS and ATLAS 13 TeV top-threshold corridors, while keeping the gluon-width normalization as an explicit amber audit gate.

In standard language
A top-threshold cross-section packet is compared to CMS/ATLAS rows after the finite-binomial beam-access machinery is frozen. Absolute height still carries the stated gluonic-width normalization caveat.
Theory-side sensitivity
Main sensitivity is the Gammaη→gg normalization and beam-access luminosity model, not detector tuning. Ratio rows are cleaner than absolute height.
QTT archived
2026-06-26 under concept DOI 10.5281/zenodo.20123498.
Comparator released
CMS TOP-24-007 public page/arXiv 2503.22382, 28 March 2025; ATLAS-CONF-2025-008, 7 July 2025.
Upstream rails
beam-accesspseudoscalar corePDF-free thresholdGammagg amber gateblind small-x audit harness
Sector
Collider / top threshold
Concept under test
Pseudoscalar t tbar finite threshold address core times Artian proton-gluon beam-access rail; no empirical PDF table, detector fit, K-factor repair, or post-data exponent shift is allowed to write the constructor.
Observable / dataset
CMS TOP-24-007 reports an 8.8 +1.2/-1.4 pb simplified-toponium excess at 13 TeV; ATLAS-CONF-2025-008 reports a nominal quasi-bound-state cross-section of 9.0 ± 1.3 pb at 13 TeV, with model-dependent alternative fits kept separate.
QTT target
σppQTT(pp → ηt → t tbar) = 8.475386076 pb at 13 TeV, using LggQTT=14.053969864, Mη=343.116 GeV, and the printed Gammaη→gg normalization rail.
Result / sigma
Official-data pulls verify as CMS -0.250 σ, ATLAS -0.404 σ, and simple two-detector display combination -0.462 σ. The v4 verifier reproduces the finite-binomial luminosity/audit-row layer and locks σ13; the absolute height remains load-bearing on Gammaη→gg=0.05164 GeV, so that rail stays AMBER until its source derivation is separately closed.
Book anchor
QTT Main Book v10.01, pp. 1063-1072; toponium concept DOI 10.5281/zenodo.20123498.
Next check / falsifier
Close or publish the Gammaη→gg source-normalization derivation, then test the locked 13.6/14 TeV scaling without renormalizing the beam-access rail. Keep the ATLAS nominal, simplified-model, and alternative-baseline values visibly separate.
Pull history
v4.0 supersedes the older v3.0 site row. Independent readback verified the CMS public page/arXiv abstract, the ATLAS CONF PDF nominal value, the v4 Zenodo file order, and the shipped standard-library verifier. The finite-binomial luminosity and 13→14 audit rows are reproducible; the absolute 13 TeV height remains explicitly load-bearing on the Gammaη→gg normalization rail.
Enumeration card
Legal space
Finite-binomial beam-access threshold packet with locked 13 TeV and 13→14 TeV rows.
Gates
Mη, λA, luminosity operator, and no detector/K-factor retuning before CMS/ATLAS comparison.
Survivors
One source threshold packet; Gammaη→gg normalization remains amber for absolute height.
Timestamp
Toponium concept DOI 10.5281/zenodo.20123498.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20123498. Open the v4 PDF and release ZIP; run @@QTTPROTECTED0@@ to regenerate @@QTTPROTECTED1@@ and @@QTTPROTECTED2@@. Compare σ13=8.475386076 pb separately to CMS 8.8 +1.2/-1.4 pb and ATLAS nominal 9.0 ± 1.3 pb. Do not let the comparator write λA, Lgg, a K-factor, detector rate, or the Gammaη→gg source rail.
Observed PullsGREEN source-word enumeration / precision micro-provenance; YELLOW covariance packet
max |z| 0.28

Quark Family-Rank CKM Precision Packet

The v4.0 quark reference paper keeps the source complex and CKM holonomy intact, then closes the precision micro-provenance layer used by the book's CKM row and downstream PMNS solar bridge.

In standard language
A finite CKM source-word search leaves one precision packet, then the left-access CKM matrix is compared to global-fit corridors. The observed CKM entries are not allowed to choose the packet.
Theory-side sensitivity
Finite-packet enumeration is closed, but the global correlated CKM covariance packet and quark-mass compiler remain pending.
QTT archived
2026-06-19 under concept DOI 10.5281/zenodo.20722978
Comparator released
Quark family-rank/CKM concept DOI family 10.5281/zenodo.20722978; CKM global-fit corridors remain the external comparator family and the correlated covariance packet is still pending.
Upstream rails
MARIAMquark source complexfinite precision packetreal-J holonomyleft-access rowconstructor firewall
Sector
Flavor / quark CKM precision packet
Concept under test
Finite quark source complex with DU=diag(mu,mc,mt), DD=diag(md,ms,mb), and CKM as a path-ordered real-J holonomy VCKMsrc=R23 R13J R12 across the source sheets. Version 4.0 adds the finite precision packet rather than importing CKM decimals from observation.
Observable / dataset
Nine CKM magnitudes and JCKM against current global-fit corridors.
QTT target
Precision packet (n12,u12,n23,a13,pδ,qδ,nL)=(20,10,104,6,7,12,192), with s12prec=0.225042858584379, s23prec=0.042713531540749, s13prec=0.003708134796885, δprec=1.147687258136975, ε23L=1/(192 ρ), and VCKMsrc=R23 R13J R12.
Result / sigma
The v4.0 machine certificate enumerates 37=2187 finite precision packets and finds exactly one active precision survivor. The left-access matrix prints |VCKMacc|=(0.97434217,0.22504131,0.00370813; 0.22490809,0.97348226,0.04181682; 0.00858454,0.04109382,0.99911841), with the largest entry pull about 0.28 σ in the row-level audit. Global correlated CKM covariance remains a declared next packet, not a hidden fit.
Book anchor
QTT Main Book v10.01, pp. 1127-1148 and scorecard pp. 126-128; quark family-rank concept DOI 10.5281/zenodo.20722978.
Next check / falsifier
Freeze the v4.0 source and precision packet, then build the public CKM covariance row card without retuning. A failed correlated CKM likelihood, legal rival precision packet, or constructor smuggling would reopen the row.
Pull history
Supersedes the 2026-06-16 v2.1 Observatory wording: source-word enumeration and precision micro-provenance are no longer described as open. The global correlated CKM covariance packet, quark-mass source-word compiler, and baryon/proton unlock remain pending.
Enumeration card
Legal space
37 = 2187 declared precision packets.
Gates
Seven-slot packet gates are applied before the CKM comparator is opened.
Survivors
2186 packets excluded; one survivor: (20,10,104,6,7,12,192).
Timestamp
Closed in the quark family-rank/CKM concept family before the public Observatory comparison.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20722978. Enumerate the seven-slot precision packet (n12,u12,n23,a13,pδ,qδ,nL) over the printed 37 finite grid, require the v4.0 gates, keep the unique survivor (20,10,104,6,7,12,192), then build VCKMsrc=R23 R13J R12 and the left-access row. Do not use observed CKM entries to write the packet.
Observed PullsGREEN source/sheet framework / PENDING quark-mass compiler
max |z| 1.5

Quark Family-Rank Source Sheets

The quark-mass row remains tied to the same v4.0 source object: up/down source sheets first, CKM holonomy and access windows second, and no six independent Yukawa knobs adjusted after observation.

In standard language
In mainstream terms, this card compares a frozen QTT target for Declared PDG-style quark-mass corridors in their appropriate schemes/scales. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-06-19 under concept DOI 10.5281/zenodo.20722978
Comparator released
Quark family-rank/CKM concept DOI family 10.5281/zenodo.20722978; PDG-style quark-mass corridors and scheme conventions remain external comparators.
Upstream rails
MARIAMfinite quark source complexDU sheetDD sheetscheme windows
Sector
Flavor / quark source sheets
Concept under test
MARIAM birth masses are read as sheet values transported through declared QCD, QED, electroweak, and scheme windows; the CKM holonomy then lives between the up and down source sheets.
Observable / dataset
Declared PDG-style quark-mass corridors in their appropriate schemes/scales.
QTT target
The access wrapper WqS RqYM Rqγ RqEW MqA.
Result / sigma
The CKM precision packet is now closed in v4.0, while the quark-mass source-word compiler is explicitly still pending. Earlier mass-sheet audits remain context, not a new green mass theorem.
Book anchor
QTT Main Book v10.01, pp. 1127-1148 and scorecard pp. 126-128; quark family-rank concept DOI 10.5281/zenodo.20722978.
Next check / falsifier
Close the quark-mass source-word compiler and precision scheme/branch maps; keep top convention maps separated from source birth values.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-06-19 under concept DOI 10.5281/zenodo.20722978
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20722978. Keep source birth sheets and QCD/QED/EW/scheme readout maps distinct; do not treat top direct, pole, MC, and event-mass values as a single source mass.
Observed Pullsgreen readout windows
max |z| 0.144

Light Pseudoscalar Readout Windows

The meson card keeps core and readout layers separate: isosymmetric QCD cores first, finite observation windows second.

In standard language
In mainstream terms, this card compares a frozen QTT target for PDG pion, kaon, η, and η-prime masses. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Comparator released
PDG pseudoscalar mass corridors.
Upstream rails
Lambda3chiral railreadout windows
Sector
Hadron / pseudoscalar windows
Concept under test
Chiral compression rail, anomaly core, and finite electromagnetic/isospin readout windows.
Observable / dataset
PDG pion, kaon, η, and η-prime masses.
QTT target
QTT chiral core plus the declared physical readout windows.
Result / sigma
Book scorecard reports pi0 -0.122, π± -0.131, K+ -0.00017, K0 +0.0035, η +0.114, η' +0.144 σ; core Mπ +0.134 and MK +0.351 σ.
Book anchor
QTT Main Book v10.01, pp. 1094-1095 and scorecard pp. 126-128.
Source links
Next check / falsifier
Do not compare core values to physical charged/neutral masses before the readout split.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Observed Pullsgreen-candidate access windows
max |z| 0.1

Access-Law Baryon Charge-State Windows

The baryon rows test whether finite access windows can read charged baryon states without turning the core into observed mass by fiat.

In standard language
In mainstream terms, this card compares a frozen QTT target for Σ, Xi, Ω, proton/neutron mass-energy corridors and hyperfine companion rows. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Comparator released
PDG/CODATA baryon and mass-energy corridors.
Upstream rails
Lambda3A6 singletcharge windows
Sector
Hadron / baryon access
Concept under test
A6 color-singlet endurance core plus charge-state access/projector windows.
Observable / dataset
Σ, Xi, Ω, proton/neutron mass-energy corridors and hyperfine companion rows.
QTT target
Declared access windows for each baryon charge state and metrology layer.
Result / sigma
Book scorecard: Σ states <0.10 σ, Xi states <0.004 σ, Ω - at +0.000009 σ; eV-CODATA p/n row below 0.006 σ.
Book anchor
QTT Main Book v10.01, pp. 1094-1103 and scorecard pp. 133-144.
Source links
Next check / falsifier
Complete atomic-mass-chain and isotope covariance access maps before upgrading the metrology rows beyond green-candidate.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Observed Pullsgreen-α readout
max |z| 0.038

Higgs/Fermi Scalar-Lock Readouts

The Higgs/Fermi card separates the scalar-lock readout from the yellow quartic Higgs prediction.

In standard language
In mainstream terms, this card compares a frozen QTT target for Fermi constant, Higgs vev shadow, and Higgs radial mode. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Comparator released
PDG/electroweak Higgs and Fermi constant comparators.
Upstream rails
scalar lockHiggs subchargeFermi readout
Sector
Electroweak / scalar lock
Concept under test
Higgs modular subcharge and scalar-lock ruler.
Observable / dataset
Fermi constant, Higgs vev shadow, and Higgs radial mode.
QTT target
vlab = 246.219650916 GeV; GF = 1.16637869885×10−5 GeV−2; mh = 125.204157668 GeV.
Result / sigma
Scorecard reports v below 0.001 σ, GF -0.0019 σ, and h(125) +0.038 σ.
Book anchor
QTT Main Book v10.01, pp. 971-981, p. 1056, and scorecard p. 128.
Source links
Next check / falsifier
Quartic hhhh self-coupling is a separate waiting-for-observation row.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Observed Pullsstrong-coupling source form and lattice audits
max |z| 0.111

QCD Strong Anchor, String Tension, and Glueball Transfers

This card now uses the strong-coupling form theorem and the A6 Hadamard v4.0 compact-color kernel theorem as the current QCD dependency pair, while keeping string-tension and glueball transfers as downstream audits.

In standard language
The QCD sheet scale, string tension, and glueball rows are downstream of a locked strong-coupling/A6 half-share source chain. Lattice and PDG corridors are comparators, not fitting inputs.
Theory-side sensitivity
The QCD sheet scale is dimensionful and therefore inherits the source-ruler sensitivity, while αs and ratios are cleaner dimensionless checks. Lattice convention choices remain visible.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
PDG αs and lattice pure-gauge/string-tension comparator families; A6 compact-color kernel concept DOI 10.5281/zenodo.20744161.
Upstream rails
Lambda3NICKA6 half-shareσ3glueball transferchiral rail
Sector
QCD / glueball and string rails
Concept under test
NICK strong anchor, A6 Hadamard center-sheet half-share, βZ micro-provenance, compact-color kernel uniqueness, SUJ(3) Haar-root readout, A6-blocked string tension, and finite glueball transfer rails.
Observable / dataset
αs(mZ), static-source string tension, and pure-gauge lattice glueball spectra.
QTT target
χYM(mZ) = 2/3 + 1/(4 ρ2), ρ = 2·π cos(π/8); αs(mZ) = 0.11805244792; Φ3(U)=(1/3)ReJ Tr(U); KβZQTT(U)=exp[(βZ/3)ReJ Tr(U)]; βZ = 4.04451443141649; c3/c1Z)=0.849017324821154; √(σ3)=444.25315096 MeV; QTT scalar/tensor/pseudoscalar glueball masses.
Result / sigma
Strong-coupling theorem records αs +0.058 σ against 0.1180 ± 0.0009. The A6 v4.0 theorem preserves SA6(k=±1)=1/2 and βZ/Haar-root closure, then closes the compact-color transfer kernel itself inside the declared first-order QTT source class. Against the static-source comparator 445(3)(6) MeV the pull remains about -0.11 σ. Book scorecard also reports glueball transfers +0.013, +0.004, and -0.049 σ.
Book anchor
QTT Main Book v10.01, scorecard pp. 126-128; strong-coupling concept DOI 10.5281/zenodo.20625550; A6 half-share concept DOI 10.5281/zenodo.20744161.
Next check / falsifier
Keep pure-gauge lattice audit separate from mixed experimental resonance assignments. Future string-tension, HVP vector, chiral, and glueball rows must use the locked half-share and σ3 scale without retuning.
Enumeration card
Legal space
Strong-coupling source form plus A6 half-share first-order compact-color class.
Gates
Φ3(U), βZ/Haar-root chain, SA6=1/2, and source-kernel uniqueness are frozen before lattice/PDF comparisons.
Survivors
One QCD sheet scale √(σ3)=444.25315096 MeV is carried downstream.
Timestamp
Strong-coupling concept DOI 10.5281/zenodo.20625550 and A6 concept DOI 10.5281/zenodo.20744161.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20625550 for the strong-coupling source form and concept DOI 10.5281/zenodo.20744161 for the A6 half-share/kernel family. Hold Φ3(U), KβZQTT(U), ρ, χZ, βZ, c3/c1Z), SA6(k=±1)=1/2, and √(σ3)=444.25315096 MeV fixed before comparing string tension or rerunning glueball rows.
Observed PullsA6 half-share theorem / static-source audit
max |z| 0.111

A6 Compact-Color Kernel and QCD Sheet Scale

The A6 Hadamard v4.0 paper closes the compact-color transfer kernel upstream of the QCD sheet scale. Inside the declared first-order QTT compact-color source class, the only legal nonconstant generator is Φ3(U)=(1/3)ReJ Tr(U), forcing KβZQTT(U)=exp[(βZ/3)ReJ Tr(U)].

In standard language
A symmetric A6 center-sheet boundary crossing fixes a half-share. That half-share locks the QCD sheet scale before the static-source string-tension comparator is opened.
Theory-side sensitivity
Theory sensitivity is the legal-class statement for the compact-color kernel. Comparator sensitivity is the static-source string-tension uncertainty and convention matching.
QTT archived
2026-06-18 under concept DOI 10.5281/zenodo.20744161.
Comparator released
A6 Hadamard Center-Sheet Half-Share Theorem published 2026-06-18; static-source lattice/string-tension comparator family as cited in the paper.
Upstream rails
A6 half-shareHadamard crossingσ3static-source string tensionconstructor firewall
Sector
QCD / A6 center-sheet scale
Concept under test
The center sheet is not allowed to choose 1/3, 2/3, or 1 for one minimal crossing. The legal symmetric crossing is SA6(k=±1)=1/2. Version 4.0 keeps ρ, χZ, βZ, c3/c1Z), and s3A6, and adds that the compact-color source kernel itself is forced before the QCD sheet scale is compared against static-source string tension.
Observable / dataset
Static-source string tension after source/readout conventions are matched.
QTT target
SA6(k=±1)=1/2; Φ3(U)=(1/3)ReJ Tr(U); KβZQTT(U)=exp[(βZ/3)ReJ Tr(U)]; βZ=6chi_Z=4.04451443141649; c3/c1Z)=0.849017324821154; s3A6=1.76228797539733; √(σ3)QTT=444.25315096 MeV; σ3QTT=0.1973608621 GeV2.
Result / sigma
Using the audit comparator √(σstat)=445(3)(6) MeV, the locked QTT source value sits at about -0.11 σ. The comparator reads the already-locked source scale; it does not set the half-share, βZ, kernel, or Haar-root coefficient. This is explicitly a QTT source theorem inside Artian's Universe, not a Clay-style proof inside smooth-continuum Yang-Mills.
Book anchor
A6 half-share concept DOI 10.5281/zenodo.20744161. QTT Main Book v10.01 QCD/string/glue scorecard pp. 126-128 and color/QCD source anchors around pp. 1008-1020.
Next check / falsifier
Sharper lattice/static-source determinations should test the same locked value after the source/readout convention is declared. A stable decisive departure from 444.25315096 MeV in the declared convention would reopen the A6 center-sheet, compact-color kernel, and Haar-root chain.
Pull history
Promotes the A6 half-share from a book-printed QCD chain assumption into its own citable theorem; v3.0 closed βZ/Haar-root provenance, and v4.0 closes compact-color kernel uniqueness under concept DOI 10.5281/zenodo.20744161.
Enumeration card
Legal space
Minimal symmetric two-side center-sheet crossing.
Gates
A6 forbids a preferred side; the capacity-preserving Hadamard block fixes p = 1/2.
Survivors
SA6(k=±1)=1/2 and the first-order compact-color kernel survive; other shares are illegal for the declared crossing.
Timestamp
A6 compact-color concept DOI 10.5281/zenodo.20744161 before downstream HVP/chiral/glueball rows.
Reproduce / audit note
Start from the two-side center-sheet crossing. A6 forbids a preferred side, so the capacity-preserving Hadamard block fixes p=1/2 and SA6(k=±1)=1/2. Then force Φ3(U)=(1/3)ReJ Tr(U) and KβZQTT(U)=exp[(βZ/3)ReJ Tr(U)] inside the declared first-order compact-color class; use βZ=6chi_Z and c3/c1Z)=0.849017324821154 to obtain √(σ3)=444.25315096 MeV. Only then compare to the static-source string-tension corridor.
Observed PullsGREEN RETRODICTIVE STRUCTURAL CONFIRMATION / RELATIVE PUBLIC PRIORITY CERTIFIED / QTT commutator verdict open
82/82 integrated release checks; 8,407/8,407 deterministic access-audit checks; no commutator σ assigned

Thermodynamic Access-Intertwining Retrospective Audit

Published information-thermodynamic work data and an independent finite-chain reconstruction confirm that the same state can change extractable-work status when the permitted operation and record-access class changes. Observation as Access v11.01 preserves the central-effect construction and adds a dated QTT/standard/Cho-Lee claim-allocation certificate plus an independent record-qualification interface for the unchanged sealed same-effect test.

In standard language
In mainstream terms, the retrospective rows are information-thermodynamic demonstrations that allowed controls and accessible records change extractable work. QTT's additional move is to construct one central effect before data and require that object to enter both thermodynamic and canonical readouts.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
First public QTT object: 2026-05-10T22:53:41.208678Z under concept DOI 10.5281/zenodo.20114403; current public family release v11.01 archived 2026-09-03 as Zenodo record 22274440.
Comparator released
Cho and Lee arXiv:2609.01303v1, submitted 2026-09-01T14:30:37Z, is the seventh external comparator and an independent qualification-method candidate. Its finite-library theorem and hardware rows are not QTT evidence.
Upstream rails
coherent-survival kernelpositive unital centralizationcentral effect Awcomplete physical instrumentmutual information densityextractable-work ceilingAccess-Law uncertainty floorsharp-projector recoveryscalar-inversion no-go
Sector
Foundations / thermodynamic access and measurement ontology
Concept under test
The QTT theorem builds Aw(L)=I-Zw[Kcoh(L)dagger Kcoh(L)], proves 0≤Aw≤I and η=Tr(ρ Aw), and then carries the same effect family into iA=N−1 I(K:Q), the thermodynamic work ceiling, and the Access-Law uncertainty floor. It also proves iA≠η in general, blocking any inversion of an observed work gain into a convenient QTT operator. The earlier central-projector theorem is recovered exactly when Aw is sharp.
Observable / dataset
Retrospective: access-class-dependent extractable work, exact mutual-information accounting, and finite-chain work differences reconstructed from public theory/data receipts. Prospective: one authenticated physical route read independently through work tomography and an untouched closed quadrature loop.
QTT target
Retrospective structural gate: the work ordering and information accounting must follow the declared access-class inclusion without a target-fitted QTT coefficient. Prospective QTT gate: an external retained-record certificate must first return APPROVE, every original activation gate must pass, and only then may the same independently constructed effect populate the unchanged frozen loop surface under concept DOI 10.5281/zenodo.22236546.
Result / sigma
GREEN-RETRODICTIVE-STRUCTURAL-CONFIRMATION and QTT-ZERO-FIT-SOURCE-EXPLANATORY-VICTORY for the common access object. The first QTT public object predates Cho and Lee's arXiv:2609.01303v1 by 113 days 15 hours 36 minutes, establishing relative priority for the QTT finite-address ontology and Access Law. Standard information thermodynamics and generic record-sufficiency mathematics retain standard ownership; Cho and Lee retain ownership of their finite-library completion/refusal theorem and hardware demonstrations. The retrospective rows do not test the QTT commutator.
Book anchor
Observation as Access Version 11.01 under concept DOI 10.5281/zenodo.20114403; same-central-effect preregistration concept DOI 10.5281/zenodo.22236546; Cho and Lee arXiv:2609.01303v1; QTT Main Book v10.01 Access-Law, A1, A5-X, A6, A7, Born/projection, entropy, and completed-record anchors.
Next check / falsifier
Obtain an independently produced Cho-Lee-style qualification certificate without importing its retained statistic as a QTT completed record. APPROVE makes the unchanged sealed analysis eligible after every original activation gate passes; REFUSE or DEFER returns INELIGIBLENOTHEORY_VERDICT. A qualified unity loop that excludes the QTT surface falsifies the scoped same-effect consequence.
Pull history
The first Observation as Access object was created on Zenodo at 2026-05-10T22:53:41.208678Z with manuscript date 11 May 2026 under concept DOI 10.5281/zenodo.20114403. Cho and Lee's arXiv:2609.01303v1 followed at 2026-09-01T14:30:37Z. Version 11.01 was published on 2026-09-03 with the dated chronology certificate and independent finite-record qualification interface.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
First public QTT object: 2026-05-10T22:53:41.208678Z under concept DOI 10.5281/zenodo.20114403; current public family release v11.01 archived 2026-09-03 as Zenodo record 22274440.
Reproduce / audit note
Use Observation as Access concept DOI 10.5281/zenodo.20114403. For v11.01, run the integrated 82/82 verifier, the 11,286/11,286 effect-theorem verifier, the 8,407/8,407 retrospective audit, the 79/79 chronology-and-scope certificate, and the 331/331 finite-count interface audit. Confirm the original sealed target and hashes are unchanged.
No-Retune and Internal Audits

No-Retune and Internal Audits

Rows whose key point is a frozen readout, pipeline, or covariance audit rather than a new fitted parameter. 10 Observatory records in this category. Each card states the concept under test, observed quantity, QTT target, result, book page anchor, and next falsifier or check.

No-Retune and Internal Auditsindicator atlas closed / no-retune protocols printed / direct clock observation pending
indicator-only residuals; no QTT clock pull

Absolute-Clock Laboratory Discriminator Atlas

The atlas audits laboratory anomalies that could motivate an absolute-clock test without promoting unexplained residuals into clock observations. It ranks precision G, dual-geometry Moessbauer rotation, same-flux neutron comparison, DSN flyby reprocessing, Faraday reference switching, and the sealed dual-clock Sagnac fork under one nuisance-identifiability rule.

In standard language
In mainstream terms, this card compares a frozen QTT target for Cross-method and cross-material precision-G residuals, rotating Moessbauer geometry dependence, neutron beam/bottle and electron/proton channel differences, flyby residuals, Faraday reference switching, and the dual-clock Sagnac ratio. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Indicator significance and QTT discrimination are separate columns. The largest nominal residual does not control the ranking unless its proposed clock waveform is covariance-identifiable and transfers across cameras without source retuning.
QTT archived
2026-07-18 under concept DOI 10.5281/zenodo.21428128
Comparator released
CODATA 2022, NIST Metrologia 2026, and the dated primary laboratory records listed in the atlas. The dual-clock Sagnac outcome remains future and sealed.
Upstream rails
source-readout firewallnuisance orthogonalityprecision GMoessbauer rotationneutron channelsflyby DSNFaraday switchingdual-clock Sagnac
Sector
Foundations / precision metrology / absolute-clock discrimination
Concept under test
A laboratory row is modeled as Xdlab=Cd[Xsrc;T,τ,ed]+bdd while the source is frozen. A proposed clock waveform is identifiable only through its covariance-weighted component qperp=(I-PX)q outside the nuisance span. Large residuals inside that span remain indicators, not QTT observations.
Observable / dataset
Cross-method and cross-material precision-G residuals, rotating Moessbauer geometry dependence, neutron beam/bottle and electron/proton channel differences, flyby residuals, Faraday reference switching, and the dual-clock Sagnac ratio.
QTT target
Indicator gate: ||qperp||2_{Σ−1}>0 before any clock significance is assigned. Sealed discriminator: Rstandard=1 versus RQTT=cos(π/8)=0.9238795325112867. Precision-G replication must synchronize methods, materials, azimuth, tide, environmental controls, blinding, and covariance before opening a clock waveform.
Result / sigma
FRAMEWORK CLOSED / OBSERVATION PENDING. The NIST 2026 G value is 4.05 σ below the earlier BIPM14 result from the same apparatus but 1.05 σ from CODATA; material-persistent torque offsets are nominally 6 and 7 σ. Those are replication indicators, not a derived absolute-clock signal. The historic 5.9-year G periodicity is rejected as evidence. Atomic-clock and radioactive-decay rows are retained as negative controls.
Book anchor
Absolute-clock atlas concept DOI 10.5281/zenodo.21428128, especially pp. 6-16 and the falsification atlas; QTT Main Book v10.01 pp. 220-235, 480-498, 486-493, 554-573, 916-920, and 1192-1199.
Next check / falsifier
Derive the unique QTT G-access waveform before testing G time series; execute synchronized multi-method replication with sealed nuisance/covariance packets; preserve the dual-clock Sagnac preregistration unchanged; and report null, nuisance-degenerate, source-failure, or discriminator outcomes without retuning the source.
Pull history
Version 1.01 was published on 2026-07-18 under concept DOI 10.5281/zenodo.21428128. It corrects the public citation surface to the stable concept DOI without changing the scientific atlas.
Enumeration card
Legal space
Nine ranked rows: six experimental programmes plus three controls/rejected claims, each scored on significance, orthogonality, transfer, source specificity, and practical executability.
Gates
Primary-source comparator; declared constructor ledger; nuisance-orthogonality test; cross-camera transfer; sealed null; explicit kill condition; no-retune source derivative.
Survivors
Precision G is the strongest current indicator; dual-clock Sagnac is the sharpest sealed prospective discriminator. No current row is promoted to an observed absolute-clock signal.
Timestamp
Publicly archived 2026-07-18 under concept DOI 10.5281/zenodo.21428128.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21428128. Run the included verifier, keep each residual tied to its named comparator and covariance, construct qperp=(I-PX)q, and do not assign clock significance when qperp vanishes or the clock waveform has not been derived. For Sagnac, use the separate sealed preregistration under concept DOI 10.5281/zenodo.21376520.
No-Retune and Internal Auditsaudit theorem closed / physical open gates retained
63/63 checks; no combined σ

Keystone Numerical Provenance Ledger

Version 3.0 turns the Keystone class audit into a machine-checkable provenance ledger for seven load-bearing numerical objects. It keeps equation closure, constructor legality, anchor use, chronology, empirical status, scope, and publication status on separate axes.

In standard language
This row audits how numerical claims were built and dated. Its 63 checks validate provenance bookkeeping; they are not 63 observations and must not be converted into a combined significance.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-08-15 under concept DOI 10.5281/zenodo.21141060
Comparator released
Comparator/source date not yet machine-pinned in the site ledger.
Upstream rails
A1-A7access railbook ledger
Sector
No-Retune and Internal Audits
Concept under test
Each object X carries P(X)=(SX,DX,LX,AX,JX,CX,EX,FX): source word, constructor domain, logical load, dimensional anchor, forbidden-target Jacobian, public chronology, empirical status, and falsifier. A zero static target Jacobian is necessary for no smuggling but cannot by itself turn a later construction into a prospective prediction.
Observable / dataset
Public constructor receipts and comparator chronology for ρ, qH, RHEW, λγ, αQTT−1, the G-GF bridge, and the endpoint-gain hypothesis χg=1.
QTT target
Seven complete eight-field cards; 63 of 63 machine checks; α kept retrospective; G-GF kept anchored; K2 kept open; χg=1 kept Tier-K after the endpoint-gain no-go.
Result / sigma
GREEN audit theorem: all seven provenance cards and 63 checks close. The α landing is recorded as a retrospective consistency audit, not independent confirmation. The G-GF value is +0.211626 ppm or +0.009416 σ against CODATA while spending measured GF. The historical pre-JUNO neutrino row remains +1.37 σ and the JUNO reactor update is +2.26 σ without retuning. No combined σ is printed because several rows share upstream rails. K2 source-only SI closure and physical endpoint gain remain explicitly open.
Book anchor
QTT Main Book v10.01 constructor/no-smuggling/status anchors pp. 118, 198, 303, 599, 974, 1072, and 1114; Keystone Audit concept DOI 10.5281/zenodo.21141060.
Next check / falsifier
Close K2 only by deriving the remaining caesium nuclear-magnetic and many-body source words. Judge χg=1 only through the sealed Tier-K physical test. Do not promote either gate from neighboring numerical agreement. In the photon-edge ledger, retain 24 as the Artian Geometry A5-X completed pixellate-bundle source count, not a cubic-symmetry import.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-08-15 under concept DOI 10.5281/zenodo.21141060
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
No-Retune and Internal Auditsprototype audit recorded; full covariance pending
max |z| 0.44

Precision QED No-Retune Window Suite

Version 3.03 is the technical-payload restoration: it keeps the source/readout firewall and QTT onboarding layer while restoring the detailed V2 technical payload, theorem inventory, attack-line matrix, five-tier experiment program, prototype table, caveats, QED decomposition, falsifiers, dimensional checks, dataset/covariance appendix, and release checklist. It also removes internal editorial wording that did not belong in the public paper.

In standard language
A single source packet is reused across precision-QED windows. The point of the row is no-retune propagation: Lamb/HFS/anomaly windows may test the source packet but may not rewrite it.
Theory-side sensitivity
The no-retune suite is sensitive to frozen-source covariance and window definitions; the current row keeps the full covariance pass pending rather than claiming a completed global QED fit.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Prototype precision QED/CODATA windows inherited from V2; V3.03 technical-payload restoration published 2026-06-26.
Upstream rails
α edgeelectron source packetsingle kernelQED windows
Sector
QED / no-retune reuse
Concept under test
One finite QED source kernel and capacity law reused across noise, heat, spectroscopy, and magnetic readouts; downstream windows audit the source packet but do not write it.
Observable / dataset
Prototype Lamb/HFS windows, electron magnetic readout, future muonium/positronium and full covariance rows.
QTT target
int0^∞ Kλ(ω)/(π ω) d ω = αλ, with ∂ Kλ/∂ Oaexp = ∂ αλ/∂ Oaexp = ∂ mesource/∂ Oaexp = 0.
Result / sigma
V3.03 records the inherited prototype pulls (0.44, 0.17, 0.15, 0.37, 0.03)σ, χ2diag ≈ 0.38, and χ2/dof ≈ 0.58 as a no-visible-drift audit while restoring the full technical scaffolding that supports the claim. It freezes the source/readout grammar; the full Lamb/HFS/ae/muonium/positronium covariance execution remains pending.
Book anchor
QTT Main Book v10.01, QED scorecard pp. 1037-1045 and compact master ledger p. 1248. Precision QED concept DOI 10.5281/zenodo.20121952; electron/Rydberg source packet concept DOI 10.5281/zenodo.20800371; photon-edge concept DOI 10.5281/zenodo.20628735.
Next check / falsifier
Run the full frozen-source covariance packet. A future failed no-retune reuse in QED, Rydberg, impedance, or photon-window tests would weaken the α/source rail; it must not be rescued by refitting α, Kλ, or mesource.
Pull history
Precision QED concept DOI 10.5281/zenodo.20121952 now routes to v3.03. The public row separates prototype evidence from the pending full covariance execution and notes that V3.03 restores the technical payload compressed in V3.01 while removing internal editorial wording from the public paper.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20121952. Keep αλ, Kλ, and mesource frozen before opening QED windows; do not allow Lamb/HFS/ae/muonium/positronium rows to retune the source packet.
No-Retune and Internal Auditssource/lab corridor green
max |z| 0.0135

Rydberg Source Audit

The Rydberg row is anchored by the Electron Source-Lab Rydberg theorem v5.01. The theorem keeps the scalar-lock provenance gate intact, derives the electron rank-anatomy denominator and finite γ-W micro-access bridge before opening the CODATA corridor, and now closes atomic-unit source propagation plus hydrogen/QED row separation.

In standard language
The Rydberg constant is treated as a laboratory access readout of a frozen electron source packet. Real-hydrogen and full multi-row QED covariance checks remain separate from the source theorem.
Theory-side sensitivity
Dimensionful metrology row. The displayed Rydberg pull is strong, but full QED/hydrogen covariance and absolute-source propagation are kept as explicit gates.
QTT archived
2026-06-26 under concept DOI 10.5281/zenodo.20800371
Comparator released
CODATA Rydberg corridor; v5.01 source-lab theorem published 2026-06-26.
Upstream rails
electron rank anatomyγ-W micro-accessatomic-unit packetQED no-retune windows
Sector
QED / metrology access
Concept under test
Electron rank-anatomy constructor Re=256·384·198·97, γ-W micro-access rail Ie=1/(ρ Re)+1/(64 Re), source electron mass, source/lab Rydberg corridor, atomic-unit source packet, and QED no-retune window suite.
Observable / dataset
CODATA Rydberg constant read after the declared source/lab electron rail; the observed row is not allowed to write the constructor.
QTT target
RQTT = αλ2 mesource c/(2h) = 10,973,731.568156838 m−1, with mesource=0.510998950610811 MeV.
Result / sigma
GREEN corridor audit: zR=-0.0135 σ. CLOSED source-side pieces: Rector=1,888,026,624, Iesrc/lab=9.951823065003947×10−11, the Rydberg source-scale chain, atomic-unit source propagation, hydrogen-window row separation, and the upstream source-only SI/GeV endpoint bridge/firewall as a ruler map. FROZEN boundary: QED no-retune window suite. PENDING boundary: the full Lamb/HFS/ae/muonium/positronium multi-row χ-square audit and the completed address-capacity numerical certificate for the absolute source ruler.
Book anchor
QTT Main Book v10.01, Koide/access pp. 1037-1045 and 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; charged-lepton rank concept DOI 10.5281/zenodo.20698191; photon-edge concept DOI 10.5281/zenodo.20628735.
Next check / falsifier
Future CODATA-level shifts, access-covariance failures, or a legal alternative γ-W metric signature should be treated as direct stress tests. Do not refit α, the electron row, or the 64=2cov·32Σ access door to rescue the Rydberg corridor.
Pull history
Supersedes the older Rydberg working-note row by pointing the Observatory to concept DOI 10.5281/zenodo.20800371. The fine-structure and photon-edge papers remain upstream anchors, not the Rydberg theorem itself.
Enumeration card
Legal space
Frozen electron source packet and γ-W micro-access exponent.
Gates
Re constructor, Ie correction, atomic-unit source propagation, and real-hydrogen row separation.
Survivors
One R source-access value; full QED multi-row χ-square audit remains pending.
Timestamp
Electron/Rydberg concept DOI 10.5281/zenodo.20800371.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20800371. Recompute Rector=256·384·198·97, Ie=1/(ρ Re)+1/(64 Re), mesource, RQTT, and the atomic-unit packet before comparing to CODATA or real-hydrogen/QED windows. Do not allow observed R, observed α, fitted electron-mass corrections, Lamb/HFS rows, ae, muonium, or positronium to write the constructor.
No-Retune and Internal AuditsGREEN composition/identifiability / REJECTED identity branch / AMBER numerical source packet
no theory σ; identity branch residual +57.296978%

Rb/Cs Clock-Constellation Identifiability Gate

A single alkali hyperfine line measures a nuclear-response/electronic-contact product. The v2.0 framework proves what a connected family of such product rows can identify, how one source pin per connected component removes the remaining multiplicative gauge, and which alternating cycles become parameter-free consistency tests.

In standard language
In mainstream terms, this card compares a frozen QTT target for The non-definitional BIPM 2025 87Rb/133Cs clock-frequency ratio, used only after the finite source composition and cancellation theorem are printed. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-07-11 under concept DOI 10.5281/zenodo.21309105
Comparator released
Comparator/source date not yet machine-pinned in the site ledger.
Upstream rails
A1-A7access railbook ledger
Sector
No-Retune and Internal Audits
Concept under test
Finite real-J nuclear and electronic source objects are composed through a balanced joint-address tensor product. Taking logarithms turns the clock family into a bipartite incidence problem z=B θ, with rank(B)=v-q and dim ker(B)=q for q connected components.
Observable / dataset
The non-definitional BIPM 2025 87Rb/133Cs clock-frequency ratio, used only after the finite source composition and cancellation theorem are printed.
QTT target
ν87Rb/ν133Cs = (7/6)(G87nuc C87,5s^el)/(G133nuc C133,6s^el); the Artian tick, E, R, αλ, and μpe cancel. For every alternating cycle, producti y_(ai bi)/y_(a_(i+1) bi)=1.
Result / sigma
GREEN at structural scope: joint-address hyperfine composition, bipartite rank/nullity, one-pin-per-component identifiability, and cycle locks. BIPM 2025 gives ν87Rb/ν133Cs=0.7434957454957769 with relative standard uncertainty 3.4×10−16. The frozen caesium identity transfer gives 1.1694963419043314, a +57.296978% residual, and is rejected as a universal alkali source law. No σ is assigned because that rejected branch has no independent QTT theory covariance. The numerical finite heavy-alkali nuclear/contact packet remains AMBER.
Book anchor
QTT Main Book v10.01, source/readout and no-smuggling pp. 9-22, A4/A5-X/A6/A7 source anchors pp. 213-227 and 250-268, Hamiltonian and hyperfine contexts pp. 1037-1045 and 1094-1103. Hyperfine framework concept DOI 10.5281/zenodo.21309105; K2 caesium source-packet concept DOI 10.5281/zenodo.21249436; electron/Rydberg concept DOI 10.5281/zenodo.20800371.
Next check / falsifier
Derive at least one nuclear response or one electronic contact source value per connected isotope/orbital component before opening additional clock ratios. A future source prediction must be frozen before the BIPM ratio is used as a comparator; precision alone may not be used to choose the source factorization.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-07-11 under concept DOI 10.5281/zenodo.21309105
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
No-Retune and Internal AuditsGREEN source bridge / AMBER numerical certificate
no σ; certificate pending

Source-Only SI Endpoint Bridge

The source-only SI endpoint bridge isolates how QTT's universal Artian capacity endpoint E is read into SI/GeV units without importing G, R, electron mass, electroweak rows, or CODATA comparators as hidden constructors.

In standard language
This is the source-only endpoint row for the absolute SI/ruler problem. It isolates what is closed from what still needs an independent completed-address numerical certificate.
Theory-side sensitivity
This is the keystone sensitivity itself: dimensionful rows remain conditional until the completed address-capacity numerical certificate and absolute A5-X ruler origin are closed.
QTT archived
2026-07-03 under concept DOI 10.5281/zenodo.20936013
Comparator released
Comparator/source date not yet machine-pinned in the site ledger.
Upstream rails
A1-A7access railbook ledger
Sector
No-Retune and Internal Audits
Concept under test
A5-X completed-address event plus A6 finite capacity and A7 closure give the source bridge E tA = ℏ and E = ℏ c / ℓA. The theorem is about the legal unit bridge and no-smuggling firewall, not a claim that a dimensionful endpoint can be made from dimensionless integers alone.
Observable / dataset
Audit-only metrology rails: BIPM/NIST SI definitions, GeV conversion, Newton/G, Rydberg/electron, QED, and electroweak rows are downstream readouts or comparators, not source constructors.
QTT target
tA = ℓA/c; E tA = ℏ; E = ℏ c/ℓA; E[J] = hSI ν[Hz]/(2·π); E[GeV] = hSI ν[Hz]/(2·π·109 eSI); NK2 = (αλ2/(4·π))·(mesource c2/E)·ΦCssource; ΦCstarget = 2.7942472×10−6; ∂ E/∂(Gobs,Robs,meobs,GFobs,mHobs,mtobsobs)=0 with ℓA,ℏ,c fixed at the source layer.
Result / sigma
GREEN: source-only SI/GeV endpoint bridge, coefficient uniqueness inside the A5-X/A6/A7 constructor class, SI/GeV unit-rail separation, no-G/no-Rydberg/no-electron-mass/no-electroweak constructor firewall, K2 hyperfine factorization, and the finite joint-address hyperfine composition/identifiability theorem. AMBER: the finite 133Cs nuclear/atomic source packet ΦCssource, the completed address-capacity numerical certificate, and the absolute A5-X ruler's numerical origin remain pending.
Book anchor
QTT Main Book v10.01, source/readout and no-smuggling pp. 9-22, A5-X/A6/A7 pp. 250-268, Artian micro-ruler and G anchors pp. 56, 193, 238-241, 268, and scorecard pp. 126-128. Source-only SI endpoint concept DOI 10.5281/zenodo.20936013; hyperfine composition concept DOI 10.5281/zenodo.21309105.
Next check / falsifier
Close the amber gate only by deriving ΦCssource for the 133Cs hyperfine packet, or an equivalent completed address-capacity source-frequency or inverse-length certificate, without using observed G, R, electron mass, electroweak rows, α, the SI cesium definition, or any fitted laboratory comparator as a constructor. The identifiability theorem now adds a stricter requirement: one independent source pin is needed for every connected nuclear/contact component.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-07-03 under concept DOI 10.5281/zenodo.20936013
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
No-Retune and Internal AuditsGREEN method and packet gates; RED frozen two-pion BaBar lineshape
max |z| 1.36

Artian's HVP Source-Access Reference Framework

Version 50.0 executes the recovered 140-bin BaBar two-pion packet at publication level. It closes the publication-camera, control, finite-bin, covariance, robustness, provenance, and no-retune gates, while preserving the source/access separation inherited from the framework.

In standard language
The HVP framework separates the QCD/vector source object from laboratory channel access. V50 closes the BaBar packet and full-covariance execution gates, leaves the scalar integral moderately compatible, and records that the present frozen resolved lineshape does not pass the BaBar covariance test.
Theory-side sensitivity
Sensitivity lives in Fπ source completion, full source covariance, and row-card comparator choices. The page must not promote source diagnostics as final physical HVP central values.
QTT archived
2026-07-11 under concept DOI 10.5281/zenodo.20732034.
Comparator released
BaBar public two-pion row and published covariance, executed in HVP v50.0 on 2026-07-11.
Upstream rails
QCD vector sourceBaBar publication cameraself-normalized ISR accessfinite-bin projectionfull covarianceconstructor firewall
Sector
Muon g-2 / HVP source-access
Concept under test
HVP is a source-access problem, not a fitted new muon force: experiments read the QCD vector-current source through declared rows; they do not write the source. Shape agreement, row height, and full physical source completion are tracked as separate gates.
Observable / dataset
The unfolded, bare BaBar e+e- → π+π-(γ) cross section including final-state radiation, normalized by the measured muon effective ISR luminosity, with the published statistical-plus-systematic covariance over 140 bins from 0.600 to 0.880 GeV.
QTT target
R2·π^{B,QTT}(s)=exp(-4 χ0)[R2·π^{src,QTT}(s)/Gsrc,B]^(-4 χ0)R2·π^{src,QTT}(s), χ0=15/(512 ρ), ρ=2 π cos(π/8), with χ2full=zaμ2+χ2shape and the source frozen during judgment.
Result / sigma
GREEN: packet recovery, publication-camera theorem, archival muon controls, topology preregistration, finite-bin projection, covariance decomposition, robustness tests, and no-retune firewall. The scalar pulls are +1.361223 and -0.593757. RED: the present frozen source lineshape gives χ2shape=57765.6144 or 85030.2611 for 139 degrees of freedom, far above the preregistered 167.5143 gate.
Book anchor
HVP source-access concept DOI 10.5281/zenodo.20732034; QTT Main Book v10.01 pp. 583-620, with two-universe ontology anchor p. 1262.
Source links
Next check / falsifier
Derive any successor timelike ρ-ω and broad-ρ source operator upstream, without using the BaBar residual as a constructor, freeze it, and test it prospectively while retaining this red V50 row as history.
Pull history
V50 supersedes the earlier pending BaBar packet/camera rows by executing the public packet. It preserves all method closures and records a red frozen-source lineshape verdict rather than retuning the source.
Enumeration card
Legal space
Declared HVP source/access grammar with same-support refinement and intrinsic covariance scaling.
Gates
Rsrc, muon kernel, source/access firewall, same-support coefficient, and covariance scaling before lab row lifting.
Survivors
Source-access grammar green; full Fπ source completion and physical normalization remain open.
Timestamp
HVP concept DOI 10.5281/zenodo.20732034.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20732034. Run the V50 publication-camera adjudication and independent verifier. Confirm the archival muon controls, nB=4 access word, 140-bin finite projection, scalar/shape split, diagonal-covariance test, two-percent oracle, and 31/31 invariant checks. Do not let the BaBar residual write a successor source operator.
No-Retune and Internal Auditsinternal pipeline pass
max |z| 0.5

Test B Gas-Only Cluster Lensing

The book is careful here: the internal CLASH/HFF-style pipeline is green inside QTT's own test, but the page marks the independent confirmation as still open.

In standard language
In mainstream terms, this card compares a frozen QTT target for CLASH+HFF-style κ map slope test. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-05-08 under concept DOI 10.5281/zenodo.20071244
Comparator released
Internal CLASH/HFF-style replay; independent external release still pending.
Upstream rails
gas mapsubstrate curvatureshape pipeline
Sector
Lensing / internal pipeline
Concept under test
Baryonic morphology and substrate-curvature lensing with gas-based effective density.
Observable / dataset
CLASH+HFF-style κ map slope test.
QTT target
κobs = s κQTT + b, with sQTT = 1.
Result / sigma
Reported slopes 0.95-1.05, combined sfit = 0.99 ± 0.02, |b| ≤ 0.05, R2 ≈ 0.8-0.9; deviation about 0.5 σ.
Book anchor
QTT Main Book v10.01, pp. 1197-1198.
Next check / falsifier
Needs independent replay with locked map-building, public observed maps, and residual verdicts.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-05-08 under concept DOI 10.5281/zenodo.20071244
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
No-Retune and Internal Auditsshape-locked validation
shape-locked; no single σ

Abell 2744 Shape-Locked Lensing Validation

A2744 is kept as a protocol validation rather than squeezed into a fake single-number σ.

In standard language
In mainstream terms, this card compares a frozen QTT target for Three independent Abell 2744 reconstructions. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-05-09 under concept DOI 10.5281/zenodo.20091011
Comparator released
Three reconstruction families; precise source dates pending in machine ledger.
Upstream rails
shape lockA2744substrate curvature
Sector
Lensing / shape lock
Concept under test
Substrate-curvature cluster-lensing equation under a shape-locked protocol.
Observable / dataset
Three independent Abell 2744 reconstructions.
QTT target
The QTT substrate-curvature lensing equation must preserve the locked shape across independent reconstructions.
Result / sigma
Compact corpus ledger records validation across three independent reconstructions; no single universal σ is assigned.
Book anchor
QTT Main Book v10.01, compact ledger p. 1253; public A2744 DOI record carries the reconstruction claim.
Source links
Next check / falsifier
Use independent reconstructions and declared shape locks before inspecting residuals.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-05-09 under concept DOI 10.5281/zenodo.20091011
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
No-Retune and Internal Auditsaccess-clock audit
max |z| 0.37

Hydrogen and Muonium Hyperfine Access Clocks

These are access-window frequency rows: strong numerically, but deliberately scoped because full HFS covariance and isotope windows remain future work.

In standard language
In mainstream terms, this card compares a frozen QTT target for Hydrogen 21 cm benchmark and muonium 1S hyperfine spectroscopy. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Comparator released
Hydrogen 21 cm and muonium HFS spectroscopy comparators.
Upstream rails
α edgeHFS windowlepton access
Sector
Metrology / access clocks
Concept under test
Maison Valmy hydrogen HFS bridge and structure-free muonium lepton access clock.
Observable / dataset
Hydrogen 21 cm benchmark and muonium 1S hyperfine spectroscopy.
QTT target
Single-kernel HFS/access readout windows.
Result / sigma
Hydrogen residual +0.0807 Hz; muonium combined pull +0.37 σ after declared theory/access window.
Book anchor
QTT Main Book v10.01, pp. 1102-1103 and scorecard p. 144.
Source links
Next check / falsifier
Future isotope, muonic-hydrogen, and full HFS covariance windows are explicit falsifiers.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Structural Anchors

Structural Anchors

Theorems, guardrails, and ontology anchors with empirical context but no clean standalone σ value yet. 10 Observatory records in this category. Each card states the concept under test, observed quantity, QTT target, result, book page anchor, and next falsifier or check.

Structural Anchorssource theorem / time-tilt bridge closed / high-regime twin test pending
no σ; structural row

Artian's Time Framework

The current Arrow/Now framework separates four typed objects: A1 orders completed events, A7 protects completed history, A2 supplies endurance support, and A3 creates White-Void source volume. Time Tilt and Creation Drift map the ABC source clock into lab age, while laboratory clocks read the result through positive clock/access factors.

In standard language
In mainstream terms, this card compares a frozen QTT target for Cross-sector arrow consistency: entropy growth, durable measurement records, delayed-choice/no-past-rewrite behavior, twin-clock address paths, retarded address support, the separately typed fixed-origin source-volume history, weak-field/Schwarzschild clock slowing, cosmic-age clock readout, and high-regime finite-address clock deviations. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Structural row: no σ or theory error bar is assigned until a numerical comparator and covariance packet are declared.
QTT archived
2026-08-13 under concept DOI 10.5281/zenodo.20761499
Comparator released
No external comparator date; this row is an internal consistency and future-operator-kernel audit gate.
Upstream rails
A1/A7 completed-record monotoneA2 endurance supportA3 fixed-origin source volumeQuantized NowTime Tilt / Time DriftA2 proper-time metric shadowquantized Lorentz boost ledgerhigh-regime twin deviationretarded address operator
Sector
Foundations / arrow of time
Concept under test
The completed-record monotone is Δ Nrec=sume re≥0 on the A1/A7 rail. Quantized Now is NowR(Tn)={X in R:a(X)=n} with Tw(X)=T_{a(X)}. The separately typed source ledgers are NSQA2=B·NT and NSQA3=12·B·NT·(NT+1) under the fixed-at-origin Artian mass inventory B=M/mA. Time Tilt plus Creation Drift gives θage=π/8+π/48=7·π/48 and t0lab=T0ABC·cos(7·π/48). A2 supplies local endurance/proper-time consumption through d τ=exp(-EA2)·√(1-v2/c2)·dT; the physical retarded address operator is GphysQTT=GJ+=Thetaw·LJ−1 with Piphys·GJ·Pisrc=0.
Observable / dataset
Cross-sector arrow consistency: entropy growth, durable measurement records, delayed-choice/no-past-rewrite behavior, twin-clock address paths, retarded address support, the separately typed fixed-origin source-volume history, weak-field/Schwarzschild clock slowing, cosmic-age clock readout, and high-regime finite-address clock deviations.
QTT target
The A1/A7 record rail must carry Δ Nrec≥0 and σT=+1 without identifying that count with A2 support or A3 source volume. The fixed-origin source-volume row must independently carry NSQA2=B·NT and NSQA3=12·B·NT·(NT+1). The clock layer must retain NowR(Tn), θage=7·π/48, t0lab=15.4 Gyr·cos(7·π/48)=13.81184 Gyr, and the declared positive access factors.
Result / sigma
Closed inside their declared QTT constructors: A1/A7 completed-record monotonicity, Quantized Now, Time Tilt plus Creation Drift age bridge, no-past-rewrite boundary, twin address-path theorem, A2 proper-time metric shadow, the separately typed A2/A3 finite source-volume ledger under the fixed-origin B premise, weak-field and Schwarzschild clock readouts, quantized Lorentz finite-boost ledger, measurement-record arrow, and retarded address-operator theorem. These are speculative source theorems pending discriminating tests; source-volume growth is not used as an entropy coefficient.
Book anchor
Arrow-of-time concept DOI 10.5281/zenodo.20761499; QTT Main Book v10.01 A1/A7 event-order and persistence anchors, A2/A3 support and creation anchors, entropy, Creation Ledger, and measurement-record anchors.
Next check / falsifier
Stress the typed construction separately: seek an eligible record experiment with a negative completed-record increment, an A2 endurance readout incompatible with its proper-time shadow, an A3 source-volume history incompatible with the fixed-origin or convolution theorem, or a qualified timing/access experiment that rejects the sealed record-to-timing bridge.
Pull history
Artian time framework published under concept DOI 10.5281/zenodo.20761499.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-08-13 under concept DOI 10.5281/zenodo.20761499
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20761499 and entropy concept DOI 10.5281/zenodo.20045306. Verify the A1/A7 completed-record monotone separately from NSQA2=BNT and NSQA3=12BN_T(NT+1), then verify Quantized Now membership, the Time Tilt plus Creation Drift bridge t0lab=T0ABC cos(7·π/48), positive lab-clock factor, A2 proper-time metric shadow, finite boost ledger, entropy vector, no-past-rewrite boundary, twin address-path sums, and retarded address operator without inserting an independent Past Hypothesis, smooth block ontology, ideal γ=∞ limit, or advanced-support radiation postulate.
Structural AnchorsGREEN source-to-IR field theorem / finite-address correction map closed
no σ; GR-shadow plus correction-map row

A2 Endurance to Einstein-Field Dynamics

The A2 paper closes the gravity-side bridge from endurance sink counts to the infrared Einstein field equations, then prints the first finite-address laboratory correction map underneath the smooth field.

In standard language
In mainstream terms, this card compares a frozen QTT target for Inherited low-energy GR-shadow tests plus QTT-specific finite-address rows: shell coverage, causal turn-on, patch-count estimator, and traction-count covariance. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Structural row: no σ or theory error bar is assigned until a numerical comparator and covariance packet are declared.
QTT archived
2026-06-19 under concept DOI 10.5281/zenodo.20763263
Comparator released
Standard GR weak-field and radiative tests are inherited as IR-shadow checks; finite-address correction measurements remain future/source-access declared.
Upstream rails
A2 endurance sinkNewton-Poisson currentIR uniqueness gatefinite-address patch countcausal shell turn-on
Sector
Gravity / A2 IR field dynamics
Concept under test
A2 continued existence is a source-side support cost. The paper reads mass as an endurance sink, builds the support current, fixes GA=ℓtilde2 c3/ℏ from the Artian ruler/tick ledger, and uses locality, address-relabeling covariance, second-order capacity response, and local endurance conservation as the IR uniqueness gate.
Observable / dataset
Inherited low-energy GR-shadow tests plus QTT-specific finite-address rows: shell coverage, causal turn-on, patch-count estimator, and traction-count covariance.
QTT target
Gμν + ΛA3 gμν = (8·π GA/c4) TμνA2, with fcover=μ/n2, λ=(M/mtilde)(Δ T/ttilde)A/(4·π r2), E[ghatP]=-(GA M/r2) rhat, Var(ghatP)/|E ghatP|2=1/λ, and causal turn-on Theta(k-n).
Result / sigma
GREEN inside the declared QTT source-to-infrared-shadow theorem: Newton-Poisson current, proper-time metric shadow, IR Einstein-field dynamics, and the finite-address first correction map are closed. Standard weak-field GR tests are inherited as laboratory shadows, not new fitted victories. The QTT-specific future audit is the finite-address correction/covariance row where event counts are small or source rearrangements are time-resolved.
Book anchor
A2 Einstein-field concept DOI 10.5281/zenodo.20763263; QTT Main Book v10.01 A2 endurance, G, proper-time, Einstein-Hilbert, and continuum-shadow anchors.
Next check / falsifier
A legal source-side counter-derivation that violates the A2 uniqueness gate, a clean finite-patch measurement that refuses the λ^{-1/2} count covariance after the source/access window is declared, or a source rearrangement showing instantaneous non-causal shell turn-on would reopen this row.
Pull history
A2 Einstein-field dynamics published under concept DOI 10.5281/zenodo.20763263.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-06-19 under concept DOI 10.5281/zenodo.20763263
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20763263. Start from the A2 sink count, derive the endurance current and GA=ℓtilde2 c3/ℏ, then apply the IR uniqueness gate. For the finite-address row, compute λ=(M/mtilde)(Δ T/ttilde)A/(4·π·r2) and verify σg/|<g>|=λ−1/2 without inserting measured G, fitted halo terms, or instantaneous action-at-distance.
Structural AnchorsGREEN Bekenstein-without-Hawking theorem / source-unitarity closed / thermal access flux optional
no σ; structural horizon row

A7 Black-Hole Information-Loss Denial

Version 4.0 sharpens the black-hole row: Bekenstein entropy is derived from A7/A6 address counting without requiring Hawking radiation, effective horizon temperature is a first-law/access readout, and Hawking radiation is rejected as a source constructor.

In standard language
The black-hole information row denies fundamental information loss at the source level and recovers the Bekenstein-quarter count without treating Hawking radiation as a source postulate.
Theory-side sensitivity
No direct Page-curve σ is claimed. Sensitivity is source/access separation: thermal exterior-looking flux can be a readout without becoming a Hawking source postulate.
QTT archived
2026-06-23 under concept DOI 10.5281/zenodo.20346916
Comparator released
No direct black-hole Page-curve comparator is claimed. The Page envelope, optional thermal exterior flux, and species-resolved S-matrix rows remain future access-population tests.
Upstream rails
Bekenstein without HawkingA7 horizon cutsource unitarityPage envelopeeffective-temperature access readoutfinite A6 core
Sector
Gravity / A7 information and horizons
Concept under test
A7 closure keeps the completed bundle in one universe: a finite observer may trace over hidden horizon faces, but the source ledger does not destroy modular charge or export information into a second ontology. The horizon entropy count is NH=A/(4 ℓtilde2), so SHQTT=kB A/(4 ℓtilde2); the factor 1/4 is the A7/A6 boundary count 2·π/8·π, not evidence for vacuum pair creation as source ontology.
Observable / dataset
Black-hole information-loss bookkeeping: Bekenstein-without-Hawking entropy, effective temperature as an access readout, no-Hawking-constructor firewall, Page-style fine-grained entropy bounds, finite-core/no-singularity/no-remnant ontology, optional thermal-looking exterior flux phenomenology, and future species-resolved microscopic S-matrix rows.
QTT target
QΣ=8·π·ℓtilde2; NH=2·π·A/QΣ=A/(4·ℓtilde2); SHQTT=kB·A/(4·ℓtilde2); Teff=(∂ E/∂ SHQTT)_{J,Q}=ℏ·κs/(2·π·kB·c); ∂ SHQTT/∂(Hawking flux)=0; Sradfine(T)≤min(Semitted(T),Sremaining(T)); tPage/tdrain=1-1/(2·√(2)).
Result / sigma
CLOSED source theorem: A7/A6 derive the Bekenstein quarter without Hawking radiation, A7 denies fundamental pure-to-mixed evolution, A6 denies an infinite singularity and permanent information-storing remnant at a completed address, and A2 supplies effective temperature only as a laboratory access readout. PENDING/AMBER: any thermal-looking exterior flux and species-resolved S-matrix population must be treated as optional access phenomenology, not as the source proof.
Book anchor
Black-hole information concept DOI 10.5281/zenodo.20346916. Related anchors: A7U source concept DOI 10.5281/zenodo.20097247, entropy concept DOI 10.5281/zenodo.20045306, A2 Einstein-field concept DOI 10.5281/zenodo.20763263, Artian time concept DOI 10.5281/zenodo.20761499, and QTT Main Book v10.01 A2/A6/A7, entropy, access, horizon, Page envelope, and finite-core anchors.
Next check / falsifier
Stress the row by requiring an axiom-legal source process that turns a completed pure source state into an ontologically mixed state, a necessary infinite source singularity, a Bekenstein-quarter derivation that legally depends on a Hawking constructor, or a future species-resolved horizon S-matrix/Page-envelope test incompatible with the visible/hidden access cut after access conventions are frozen.
Pull history
Black-hole information-loss denial is tracked under concept DOI 10.5281/zenodo.20346916; the v4.0 upload/readback are dated 2026-06-23.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-06-23 under concept DOI 10.5281/zenodo.20346916
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20346916. Derive QΣ=8·π·ℓtilde2, NH=A/(4·ℓtilde2), and SHQTT=kB·A/(4·ℓtilde2) before any thermal readout. Keep Teff=(∂ E/∂ SHQTT)_{J,Q}=ℏ·κs/(2·π·kB·c) as an access/first-law readout; do not import a Hawking source constructor, infinite singularity, pure-to-mixed source map, permanent remnant, or second-universe reservoir.
Structural Anchorssource holonomy closed / high-load numerical population pending
textbook AB recovered; no QTT deviation σ yet

Artian Holonomy and the Aharonov-Bohm Effect

The AB paper treats electromagnetic AB as A4 real-J dial holonomy and gravitational AB as A2 endurance/proper-time holonomy. The ordinary textbook phase is recovered in the low-density regime; QTT-specific deviations require a declared high-load A6 edge.

In standard language
In mainstream terms, this card compares a frozen QTT target for Electromagnetic AB phase, gravitational/proper-time AB rows, and future high-load finite-edge AB experiments. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-06-20 under concept DOI 10.5281/zenodo.20772090
Comparator released
Textbook electromagnetic AB and gravitational/proper-time AB experiments are consistency checks; a source-clean high-load AB apparatus remains future.
Upstream rails
A4 real-J dial holonomyA2 endurance holonomyA6 phase-density gatesource-access split
Sector
Electromagnetism / A2-A4 holonomy
Concept under test
A finite address loop carries source holonomy WγQTT=exp{J[(q/ℏ c) int Aμ dxμ - (mc2/ℏ) int d τA2]}. Gauge potentials and metric/proper-time fields remain laboratory-shadow languages rather than source primitives.
Observable / dataset
Electromagnetic AB phase, gravitational/proper-time AB rows, and future high-load finite-edge AB experiments.
QTT target
δ SeAB=(q/c) inte Aμ dxμ - mc2 inte d τA2, λeAB=|δ SeAB|/(ℏ ne)≤1. Ordinary AB experiments live at λeAB << 1 and should reproduce the textbook phase.
Result / sigma
GREEN source-side interpretation and textbook phase recovery. YELLOW/PENDING: numerical population of a concrete high-load apparatus near the A6 phase-density edge.
Book anchor
AB holonomy concept DOI 10.5281/zenodo.20772090; A2 field concept DOI 10.5281/zenodo.20763263; Hamiltonian concept DOI 10.5281/zenodo.20484906.
Next check / falsifier
Populate a declared high-load AB or gravitational-AB apparatus before claiming a QTT-specific deviation. Low-density AB agreement is consistency, not a new discriminator.
Pull history
AB holonomy is tracked under concept DOI 10.5281/zenodo.20772090.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-06-20 under concept DOI 10.5281/zenodo.20772090
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20772090. Rebuild WγQTT from the A4 charge term and A2 proper-time term. Verify λeAB=|δ SeAB|/(ℏ ne)≤1 before claiming any high-load deviation. Do not use a low-density textbook AB match as a new discriminating observation.
Structural AnchorsGREEN governance theorem / no laboratory observation claimed
no σ; verdict and scope firewall

Experimental Verdict Governance

This independent theorem prevents an eligible unexpected signal from being erased by a binary classifier and prevents an ineligible or underpowered apparatus from being used either for or against QTT. It applies symmetrically to favorable and unfavorable outcomes and leaves every earlier seal unchanged.

In standard language
In mainstream terms, this card compares a frozen QTT target for Machine-readable preregistration packets across A1 reference switching, JUNO ratio tests, A2 tabletop gravity, HVP blind rows, Folman phase tests, and future QTT experiments. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Structural row: no σ or theory error bar is assigned until a numerical comparator and covariance packet are declared.
QTT archived
2026-08-03 under concept DOI 10.5281/zenodo.21775175
Comparator released
Methodological comparator: preregistered and machine-verifiable experimental generations. No laboratory central value is used as a constructor.
Upstream rails
pre-data eligibilityordinary comparatorcovarianceprospective powerchronologyfive-outcome ledgerqualified-other preservationscope lattice
Sector
Methodology / experimental verdict governance
Concept under test
Eligibility is a pre-data logical condition, not a label assigned after seeing the landing. The frozen product Geligible=Gphysical Gordinary Gcovariance Gpower Gchronology decides whether a theory verdict is even available. A lawful executor must then retain five outcomes rather than forcing every packet into ordinary or QTT bins.
Observable / dataset
Machine-readable preregistration packets across A1 reference switching, JUNO ratio tests, A2 tabletop gravity, HVP blind rows, Folman phase tests, and future QTT experiments.
QTT target
Geligible=0 implies INELIGIBLE: NO THEORY VERDICT. If Geligible=1, the executor must distinguish registered-comparator failure of the QTT branch, registered QTT-candidate landing, qualified-other/cross-channel anomaly, and eligible but underpowered ambiguity. Failure scope is limited to the frozen operator, topology, detector degree, access map, and branch unless an explicit dependency theorem broadens it.
Result / sigma
GREEN structural closure. The five-outcome ledger, no-retrospective-eligibility theorem, qualified-other preservation rule, scope lattice, packet schema, and validator are complete. This is experimental governance, not evidence for a QTT source claim and not a replacement for hardware, covariance, replication, or a laboratory result.
Book anchor
Experimental-verdict governance concept DOI 10.5281/zenodo.21775175; QTT Main Book v10.01 methodology and no-smuggling anchors; downstream A2 successor concept DOI 10.5281/zenodo.20772326 and HVP blind-lock successor concept DOI 10.5281/zenodo.20354458.
Next check / falsifier
Apply the frozen five-outcome grammar prospectively to each new test generation. Do not alter an old seal to gain protection after seeing data; publish an append-only successor whose chronology and inheritance are machine-checkable.
Pull history
Published 2026-08-03 under concept DOI 10.5281/zenodo.21775175. It leaves earlier seals intact and supplies prospective successor rules for A2 and HVP test families.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-08-03 under concept DOI 10.5281/zenodo.21775175
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21775175. Populate the frozen packet schema and compute Geligible=Gphysical Gordinary Gcovariance Gpower Gchronology before target unblinding. Execute exactly one of five outcomes. Preserve a qualified other-channel signal and limit any failure to the registered tuple unless an explicit dependency theorem proves broader scope.
Structural Anchorssector consolidation / falsifier ledger
max |z| 6.9

Renewal Ledger Dark-Matter Branch

The current dark-matter-branch consolidation joins the fixed-coefficient source kernel, acceleration knee, Renewal Dust, lensing tests, and cosmic dipole into one falsifier-bearing ledger.

In standard language
In mainstream terms, this card compares a frozen QTT target for RAR/BTFR, Bullet/cluster lensing, redshift evolution of the knee, and cosmic-acceleration dipole orientation. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Renewal Ledger concept DOI 10.5281/zenodo.20643892, publication date 2026-06-11; comparator families include SPARC/RAR/BTFR, cluster lensing, and cosmic-acceleration dipole data.
Upstream rails
source kernela0τRenewal Dustcosmic dipolefalsifier ledger
Sector
Galaxy/lensing / Renewal Ledger
Concept under test
Fixed-coefficient source kernel KG, the acceleration knee a0τ = c Hτ/(2 π), lab floor a0τ/cos(π/8), Renewal Dust/lensing readout, and tilted-observer cosmic-dipole reading.
Observable / dataset
RAR/BTFR, Bullet/cluster lensing, redshift evolution of the knee, and cosmic-acceleration dipole orientation.
QTT target
a0τ = c Hτ/(2·π) = 9.8178×10−11 m s−2; lab floor a0τ/cos(π/8) = 1.0627×10−10 m s−2; fixed-source-kernel branch must not need fitted halo profiles.
Result / sigma
The Renewal Ledger paper declares no green σ row for a0 versus the McGaugh RAR value. It prints the stress test instead: -6.9 σ stat-only and -0.57 σ with the full empirical envelope, plus a 3.9 σ cosmic-acceleration dipole reading.
Book anchor
Renewal Ledger concept DOI 10.5281/zenodo.20643892; QTT Main Book v10.01, pp. 209-212, 535, 1209-1211, and 1253-1255.
Next check / falsifier
Run declared SPARC/RAR/BTFR/redshift and lensing tests with no per-object halo fit, no interpolating-function retune, and the H1 failure firewall kept visible.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20643892. Keep a0τ = c Hτ/(2·π) and a0lab = a0τ/cos(π/8) fixed, run the declared RAR/BTFR/lensing/dipole readouts, and preserve the no-green-RAR-row caveat.
Structural AnchorsGREEN finite constructor-class pass / YELLOW external uniqueness
max |z| 0.188

Charged-Lepton Family-Rank Constructor Theorem

Version 3.7 fixes a finite Artian/MARIAM source-word class before observation: 288 candidate words leave one survivor, with ranks (Ne,Nμ,Nτ)=(1,888,026,624,17,526,2,347). The resulting charged-lepton mass audit has max pull about 0.188 σ.

In standard language
Within the declared Artian/MARIAM charged-lepton constructor class, one survivor gives e, μ, and τ corridors. The card does not claim every possible external constructor has been enumerated.
Theory-side sensitivity
Strong inside the declared constructor class; the honest sensitivity is external uniqueness of the class and τ corridor convention.
QTT archived
2026-06-15 under concept DOI 10.5281/zenodo.20698191
Comparator released
NIST/CODATA charged-lepton mass-energy equivalents for e/μ and PDG τ corridor; charged-lepton family-rank concept DOI 10.5281/zenodo.20698191.
Upstream rails
finite source-word classMARIAM gatesdeterminant-one accessobservation-last auditno-smuggling firewall
Sector
Flavor / charged-lepton family access
Concept under test
A finite charged-lepton family constructor that reads e, μ, and τ as one determinant-one family-budget redistribution rather than three independent Yukawa inputs. The source words are fixed before the laboratory masses are opened.
Observable / dataset
NIST/CODATA electron and muon mass-energy equivalents, PDG τ mass corridor, and the charged-lepton family readout audit.
QTT target
Within the declared Artian/MARIAM legal class: 288 candidate source words → one survivor with signs (se,sμ,sτ)=(+,-,-) and ranks (Ne,Nμ,Nτ)=(1,888,026,624,17,526,2,347). The electron row is the published micro-rail 256·384·198·97; the muon row 17,526 is not the nearest-integer fit 17,519.
Result / sigma
GREEN: finite constructor-class pass and observation-last audit inside the declared class. Reported pulls: ze=+0.072, zμ=+0.188, zτ=-0.046, χ2=0.042, max |z|=0.188 σ. YELLOW/open: proof of uniqueness outside the declared Artian/MARIAM legal class.
Book anchor
QTT Main Book v10.01, Koide/access pp. 1037-1045 and 1094-1103; electron micro-rail pp. 1192-1198; scorecard pp. 126-128.
Next check / falsifier
External uniqueness remains the live mathematical target: show that no source-word class outside the declared Artian/MARIAM gates can produce a rival legal readout without using observed masses.
Enumeration card
Legal space
Declared finite Artian/MARIAM charged-lepton constructor class.
Gates
Observation-last audit, determinant-one access, family-rank constraints, and no-smuggling firewall.
Survivors
One survivor within the declared class; external uniqueness is explicitly yellow.
Timestamp
Charged-lepton family-rank concept DOI 10.5281/zenodo.20698191.
Reproduce / audit note
This card is not a claim that every imaginable charged-lepton constructor has been excluded. It is a green pass for the declared finite Artian/MARIAM constructor class, with observation opened only after the source words are fixed. External uniqueness remains the open/yellow boundary.
Structural Anchorsquadratic capacity closed / laboratory representation conditional
standard Born law recovered; no independent ontology selection

Born Quadratic Capacity and Conditional Trace Representation

The source-side square is closed in a declared finite additive real-J symmetry class. Its conversion into long-run laboratory frequency and trace form is a separate conditional representation with the bridge premises printed.

In standard language
In mainstream terms, this card compares a frozen QTT target for Standard Born-rule tests, no confirmed higher-order interference, and future address-access tests capable of probing the bridge premises independently. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Structural row: no σ or theory error bar is assigned until a numerical comparator and covariance packet are declared.
QTT archived
2026-08-03 under concept DOI 10.5281/zenodo.20118242
Comparator released
Standard Born-rule and higher-order-interference experimental literature; no single pull assigned.
Upstream rails
address projectionJ-normhigher-order interference
Sector
Foundations / probability
Concept under test
Finite address capacity is uniquely c(w)=||ρ(w)||_J^2 in the declared class. The resolved Born law additionally requires μ(w)=c(w) and a normalized, effect-additive, instrument-equivalent fixed-address functional.
Observable / dataset
Standard Born-rule tests, no confirmed higher-order interference, and future address-access tests capable of probing the bridge premises independently.
QTT target
c(w)=||ρ(w)||_J^2; conditionally, p(α|M)=sumw ||ρ(w)||_J^2 <psiw|Piα psiw>_J=TrJeff Piα).
Result / sigma
The ordinary Born law is recovered. Existing Born agreement tests the laboratory rule but does not by itself select the QTT address-capacity ontology.
Book anchor
Born concept DOI 10.5281/zenodo.20118242; QTT Main Book v10.01 pp. 268, 435-438, and 1247.
Source links
Next check / falsifier
Derive the capacity-frequency and normalized effect-functional bridges from deeper source law, or test them with an independently qualified address-access experiment.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-08-03 under concept DOI 10.5281/zenodo.20118242
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Structural Anchorssix-face green audit / ruler guardrail
max |z| 0.00942

Newton G Six-Face Artian Ledger

The current Newton/G paper keeps the original endurance theorem but upgrades the convergence ledger to six faces. The resolved photon-edge/Fermi face lands essentially on CODATA G, while the page keeps the dimensional-ruler guardrail visible.

In standard language
The Newton/G row derives a gravitational coupling expression from endurance and micro-ruler rails, then compares a photon-edge/Fermi face to CODATA G. The absolute-ruler guardrail remains visible.
Theory-side sensitivity
The displayed CODATA G pull is not a license to hide the absolute-ruler dependency. The row remains conditional on non-G micro-ruler closure.
QTT archived
2026-06-20 under concept DOI 10.5281/zenodo.20057430
Comparator released
CODATA G branch with non-gravitational weak-scale anchor GF and photon-edge αQTT; independent non-G micro-ruler still pending.
Upstream rails
Aendurancesix-face ledgerphoton-edge/Fermi faceCODATA G guardrail
Sector
Gravity / endurance ruler
Concept under test
GA = ℓA2 c3 / ℏ = ℏ c5 / E2 from Artian endurance capacity, with cross-sector reads of the same capacity endpoint through neutrino, EM capacity, Higgs/Fermi, top-unit MARIAM, and photon-edge/Fermi faces.
Observable / dataset
CODATA G corridor, the non-gravitational weak-scale anchor GF, photon-edge αQTT, and the top-mass convention guardrail.
QTT target
GA(γ H) = 6.674301412456×10−11 m3 kg−1 s−2, zG = +0.009416 σ, while Dobs(G faces)src = 0 and observed G/observed α are not allowed to write source equations.
Result / sigma
GREEN audit for the resolved photon-edge/Fermi G face and Higgs/Fermi face; source equation closed for the top-unit MARIAM face; the structural theorem still requires an Artian ruler rather than pretending dimensionless α alone determines a dimensionful G.
Book anchor
Newton/G concept DOI 10.5281/zenodo.20057430; QTT Main Book v10.01 compact G/endurance ledger anchors.
Next check / falsifier
Keep the guardrail: a non-G micro-ruler or independently fixed dimensional anchor is still needed before promoting G to an unqualified pure-number prediction. Audit top-mass scheme choices separately from the source equation.
Pull history
Newton/G current record 20773337 published 2026-06-20 under concept DOI 10.5281/zenodo.20057430; the previous v5.0 record is superseded.
Enumeration card
Legal space
Six-face G/endurance ledger with the resolved photon-edge/Fermi face shown.
Gates
qH, RHEW, αQTT, λγ, and no observed-G input.
Survivors
One displayed photon-edge/Fermi G face; independent non-G micro-ruler remains the keystone gate.
Timestamp
Newton/G concept DOI 10.5281/zenodo.20057430.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20057430. Recompute qH, RHEW, αQTT, λγ, and GA(γ H) without allowing observed G or observed α to write the source equation. Keep top-mass convention rows separate.
Structural AnchorsZERO-FIT QTT SOURCE VICTORY / STANDARD TRAJECTORY GREEN / QTT TRAJECTORY OPEN
11,009 held-out traces; TLS camera wins 92.37%; correlated windows are not promoted to a false σ

Completed-Record Fan-Out and Timing-Access Framework

Version 1.4 separates completed history from accessible memory, preserves the Uhlmann/timing bridge firewall, and executes all 11,009 usable traces in the public Gosling superconducting-qubit archive. The fitted one-TLS Solomon camera is genuinely held-out predictive; the earlier QTT distributed-record statement reaches the source conclusion with no Gosling-fitted rate.

In standard language
In mainstream terms, this card compares a frozen QTT target for The Gosling audit uses a chronological train/guard/test split for every usable trace. The decisive future QTT experiment additionally requires independently measured residual fidelity Fres, leakage D, timing complement UT, and physical intertwiner W on the same terminal packet. against the named comparator, while keeping the source equation, access convention, and laboratory readout in separate columns.
Theory-side sensitivity
Uncertainty is carried by the named comparator and any printed access-window convention; QTT does not get to retune the source target after reading that comparator.
QTT archived
2026-08-21 under concept DOI 10.5281/zenodo.21902886
Comparator released
External preprint arXiv:2608.12803, accessed 2026-08-14; exact arrays/scripts pending from the authors. No target-bearing timing dataset opened.
Upstream rails
completed historical recordaccessible memoryfinite-window obstructionphysical carrier resetUhlmann fidelitytiming-projector bridge
Sector
Foundations / measurement, records, and access timing
Concept under test
A completed historical record Nrec is not the retrievable memory state Macc. The target-fit burden vector BM=(Nc,Nd,Nw,Nn,Nu,Nh) now makes every fitted coefficient, branch, window, nuisance term, unreported freedom, and hidden multiplicity auditable. A nonzero burden leaves parameter-free derivation open at that fitted layer, even when the effective camera predicts held-out data successfully. QTT's physical timing readout remains conditional on Wdagger MUop W=Palign.
Observable / dataset
The Gosling audit uses a chronological train/guard/test split for every usable trace. The decisive future QTT experiment additionally requires independently measured residual fidelity Fres, leakage D, timing complement UT, and physical intertwiner W on the same terminal packet.
QTT target
Standard archive test: compare one-rate memoryless and two-rate one-TLS Solomon cameras on untouched test samples. QTT comparison rule: zero-fit source explanation may be claimed now; QTT-ZERO-TARGET-FIT-EMPIRICAL-VICTORY is reserved until QTT predicts the same held-out trajectory and covariance with zero target burden.
Result / sigma
The one-TLS camera achieves a 36.0% median held-out relative RMSE gain and wins 10,169/11,009 traces; 840 negative-tail traces remain visible. It learns Gammaq and Gammaqt from each trace's training segment. A public QTT source statement dated 12 November 2025 predates the preprint and uses no Gosling-fitted rate. Verdict: QTT-ZERO-FIT-SOURCE-EXPLANATORY-VICTORY / TRAJECTORY-AND-QTT-EXCLUSIVE-VERDICT-OPEN. The v1.4 release verifier passes 33/33.
Book anchor
Completed-record framework concept DOI 10.5281/zenodo.21902886; Observation as Access concept DOI 10.5281/zenodo.20114403; QTT Main Book v10.01 A3, A5-X, A6, A7, Born/projection, entropy, and measurement-record anchors.
Next check / falsifier
Build the same-observable terminal packet: measure Fres and D independently, certify W before target access, acquire UT without a programmed record-to-timing path, and score the frozen QTT trajectory against the same covariance. Until then the source victory stands and the stronger trajectory claim stays locked.
Pull history
The standalone theorem was updated to v1.2 and Observation as Access to v8.0 on 2026-08-14. Both add the finite-window obstruction and carrier-deletion audit without promoting standard recovery to QTT timing evidence.
Enumeration card
Legal space
No complete finite alternative-space enumeration is claimed on this site card yet.
Gates
Use the source DOI/book pages for the declared constructor gates; absence of a printed enumeration weakens the trials-factor defense for this row.
Survivors
Card remains as comparator evidence or structural support, not a standalone anti-numerology proof.
Timestamp
2026-08-21 under concept DOI 10.5281/zenodo.21902886
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21902886. Verify Λ0=Tr o Λr, decoder-class closure, the strict-gain obstruction, the physical reset channel, and the firewall Wr ≠ w, Pi_(Wr) ≠ Palign, Fropt ≠ ηT before assigning QTT timing meaning.
Predictions and CLEAR Tests

Predictions and CLEAR Tests

Locked future-facing tests. These do not receive green status until the declared data class exists. 31 Observatory records in this category. Each card states the concept under test, observed quantity, QTT target, result, book page anchor, and next falsifier or check.

Predictions and CLEAR TestsSTAGE-0 SEALED / TIER-S SERIAL TEST / TIER-K ZERO-FIT CONJECTURE / OBSERVATION PENDING
no observed σ yet

Sealed CISS Log-Gram Molecular-Length and Facial-Defect Test

A two-tier preregistration asks whether gain-free chiral spin log-odds add across independently certified molecular completions and subtract across independently measured face-reversing defects. Tier S learns one material slope in training and predicts held-out cells. Tier K freezes the QTT coefficient before data with no fitted amplitude.

In standard language
In mainstream terms, this is a preregistered QTT target for Positive raw currents for both enantiomers across at least four independently characterized length fractions, with racemic/achiral controls, repeated field cycles, full covariance, and an optional independently certified signed-defect series.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-08-25 under concept DOI 10.5281/zenodo.22092628
Comparator released
Future matched CISS length/defect campaign. Ordinary transport comparators and every fitted coupling, contact, dephasing, normalization, branch, and selected window must be declared against the same held-out covariance.
Upstream rails
A4 signed chiralityA5 completed interface eventA6 finite serial packetA7 reversal closureLog-Gram rapidityraw-current covariancewrong-falsification firewall
Sector
Chiral spin filtering / sealed molecular-length test
Concept under test
A4 supplies signed chirality, A5 types the molecule-surface-electron event, A6 makes the admitted serial packet finite, A7 closes reversal orbits, and the Log-Gram theorem maps one positive packet to one unique polarization vector. The fixed projected-loop increment is a separate conjecture rather than an axiom slogan.
Observable / dataset
Positive raw currents for both enantiomers across at least four independently characterized length fractions, with racemic/achiral controls, repeated field cycles, full covariance, and an optional independently certified signed-defect series.
QTT target
Xiodd=(1/4) log[(I_{+,R} I_{-,S})/(I_{-,R} I_{+,S})]. Tier S: Xiodd=β Neff(1-2f), trained once and tested held out. Tier K: Xiodd=Neff(1-2f)/[4 π cos(π/8)] with zero fitted slope, intercept, saturation, length offset, or normalization.
Result / sigma
Protocol and hash packet are sealed. No experimental result has been opened. A qualified Tier-K pass receives the registered zero-target-fit empirical-victory label. Tier-K failure with Tier-S survival rejects only the fixed coefficient; eligible nonadditivity rejects the serial material application; failed structural/current/covariance gates give no theory verdict; a third reproducible shape is preserved as an anomaly.
Book anchor
Sealed test v1.0: two-tier fork pp. 5-6, structural and current gates pp. 6-9, decision rules pp. 9-11, execution and axiom map pp. 12-13; parent theorem concept DOI 10.5281/zenodo.22084700.
Next check / falsifier
A CISS laboratory should synthesize or fractionate the matched length series, freeze independent Neff and defect characterization, blind material labels, run raw-current acquisition, then execute the public classifier without retuning either tier.
Pull history
Stage-0 sealed on 2026-08-25 under concept DOI 10.5281/zenodo.22092628, after the 2026 discovery amplitudes had been permanently assigned to the Newton-Protocol constructor ledger. The seal does not reuse those amplitudes as validation.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-08-25 under concept DOI 10.5281/zenodo.22092628
Reproduce / audit note
Recompute xiK=1/[4 π cos(π/8)], the frozen planning table, gain and enantiomer mutations, current gradient, signed-defect identity, and every classifier branch from the reconstruction ZIP. Verify the protocol seal before any result packet is opened.
Predictions and CLEAR Testslocked counter-prediction
no σ yet

Passive-Host H0 Ladder Test

The Creation Ledger record prints a concrete future discriminator: host environment should matter in a directional way, not merely add scatter.

In standard language
In mainstream terms, this is a preregistered QTT target for Distance-ladder H0 samples split by passive-host versus star-forming-host anchors.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-06-10 under concept DOI 10.5281/zenodo.20633582
Comparator released
Future or reprocessed distance-ladder host-environment split.
Upstream rails
A3 Creation Ledgerstar-forming offsetpassive-host split
Sector
Cosmology / host-environment prediction
Concept under test
A3 Creation Ledger projection fan plus star-forming offset in the late-time H0 ladder.
Observable / dataset
Distance-ladder H0 samples split by passive-host versus star-forming-host anchors.
QTT target
Passive-host anchored samples should return systematically lower H0 than star-forming samples under the same calibration discipline.
Result / sigma
Prediction printed in the Creation Ledger paper; no public σ assigned yet.
Book anchor
Creation Ledger concept DOI 10.5281/zenodo.20633582; QTT Main Book v10.01, pp. 711-715.
Source links
Next check / falsifier
Run a declared host-environment split with calibration, selection, and outlier policy fixed before reading the H0 offset.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-06-10 under concept DOI 10.5281/zenodo.20633582
Reproduce / audit note
Declare passive-host and star-forming-host samples, calibrations, and outlier policy before reading H0; the QTT counter-prediction is passive-host H0 lower than star-forming-host H0.
Predictions and CLEAR Testsprospective governance closed / numerical sensitivity and lab execution pending
no observed pull; five-outcome executor sealed

A2 Blind Tabletop Gravity Tests

Version 2.0 preserves all three original A2 tabletop tests and adds the prospective verdict layer needed to protect both QTT and ordinary physics from a wrong conclusion: a machine eligibility product, a frozen GR/QM comparator, a five-outcome executor, a qualified cross-channel anomaly route, and theorem-scoped failure language.

In standard language
In mainstream terms, this is a preregistered QTT target for Atom-interferometry/source-mass protocols with blind modulation, phase echoes, covariance analysis, reciprocal reversals, target-blind artifact injections, and future mesoscopic-source holonomy witnesses.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-08-03 under concept DOI 10.5281/zenodo.20772326
Comparator released
Future blinded atom-interferometry/source-mass or mesoscopic-source execution after all regime, ordinary-model, artifact, reversal, covariance, power, and chronology gates pass.
Upstream rails
A2 source packetequal IR phaseunequal finite address loadeight-gate eligibility productfive-outcome executorqualified-other anomalyscope-limited failure
Sector
Gravity / prospective blind tabletop protocols
Concept under test
Construct pairs of tabletop protocols that ordinary GR/QM compress into the same reduced infrared action while QTT keeps different finite A2 address packets underneath that shared phase. A row can judge that contrast only after packet, regime, ordinary-model, artifact, reversal, covariance, power, and chronology gates all pass before unblinding.
Observable / dataset
Atom-interferometry/source-mass protocols with blind modulation, phase echoes, covariance analysis, reciprocal reversals, target-blind artifact injections, and future mesoscopic-source holonomy witnesses.
QTT target
ThetaIR(PA)=ThetaIR(PB) but AA2(PA) ≠ AA2(PB), with GA2,eligible=Gpacket Gregime GGR/QM Gartifact Greversal Gcovariance Gpower Gchronology. If GA2,eligible=0, the only legal output is INELIGIBLE: NO THEORY VERDICT.
Result / sigma
GREEN prospective governance / YELLOW execution. Test 1 remains the equal-action/unequal-load gravitational AB chopper; Test 2 remains the preferred echo-cancelled endurance-covariance discriminator; Test 3 remains the quantum-source holonomy witness. The executor now distinguishes ineligible, underpowered, qualified ordinary/null, qualified A2 candidate, and qualified-other/cross-channel anomaly outcomes. No apparatus packet or empirical A2 pull is claimed.
Book anchor
Blind tabletop concept DOI 10.5281/zenodo.20772326; experimental-verdict governance concept DOI 10.5281/zenodo.21775175; related AB holonomy concept DOI 10.5281/zenodo.20772090; A2 field concept DOI 10.5281/zenodo.20763263.
Next check / falsifier
Populate one apparatus packet prospectively; freeze geometry, QTT-sensitive regime, ordinary comparator, artifact bounds, reciprocal reversals, covariance, power, scope, row hashes, and unblinding rule before reading central values. Preserve a reproducible signal outside both registered regions as a qualified-other anomaly rather than forcing it into a null or QTT label.
Pull history
The original three-test architecture is preserved under concept DOI 10.5281/zenodo.20772326. Version 2.0 adds the independent governance theorem at concept DOI 10.5281/zenodo.21775175 without reopening any historical target or seal.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-08-03 under concept DOI 10.5281/zenodo.20772326
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20772326. Freeze the protocol pair, source packet, QTT-sensitive regime, GR/QM comparator, target-blind artifact controls, reciprocal reversals, covariance, power, scope, and unblinding rule. Compute GA2,eligible before opening target labels. If it is zero, return INELIGIBLE: NO THEORY VERDICT; never repair eligibility after seeing the landing.
Predictions and CLEAR Testscarrier-independent constructor closed / platform activation and laboratory execution pending
no observed pull; activation gate only

A1 Physical-Terminal Constructor Gate

Version 1.1 is the root eligibility theorem beneath the platform-specific A1 reference-switch tests. It defines when a physical record may be called a candidate source terminal at all and blocks ordinary free evolution, software relabelling, detector clicks, programmed target angles, or an incomplete conventional rotating-platform model from masquerading as an A1 test.

In standard language
In mainstream terms, this is a preregistered QTT target for A platform-specific, machine-readable terminal certificate containing the completed-event witness, physical write ancestry, source- and laboratory-continuity bounds, overwrite history, readout map, detector degree, target-programming audit, covariance packet, chronology, and sealed outcome path.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-08-06 under concept DOI 10.5281/zenodo.21739215
Comparator released
Future qualified platform execution only. Existing Sagnac, Faraday, geometric-holonomy, quantum-clock, and flyby records are downstream platform candidates or capability references; none is promoted by this constructor into an observed A1 result.
Upstream rails
completed source eventphysical write ancestrysource continuitybounded laboratory writeno overwritetarget-blind cameracertified detector degreefail-closed verdict
Sector
Foundations / A1 physical-terminal activation
Concept under test
A physical terminal is fixed by the unique maximal physical reference write inherited by a durable record. A T-star candidate must contain one completed source event CE, continuous source memory, XiL≤εL, XiS≥ηS, no later laboratory overwrite, one final basis-selecting readout, a certified detector degree q, a target-blind camera, and P16 ordinary-null completeness. Autonomy alone is insufficient.
Observable / dataset
A platform-specific, machine-readable terminal certificate containing the completed-event witness, physical write ancestry, source- and laboratory-continuity bounds, overwrite history, readout map, detector degree, target-programming audit, covariance packet, chronology, and sealed outcome path.
QTT target
Sixteen frozen gates compute GPT. P16 requires every applicable centre-of-mass, internal-spin, field, rotational Rontgen, polarization, backscatter, trap, Zeeman, and Stark row to be included, bounded, or shown inapplicable before labels are opened. If GPT=0, the only legal output is INELIGIBLE: NO THEORY VERDICT. If GPT=1, the activated fixed points are Rordinary=1 and RQTT-A1=cos(π/8)q. The value of q and every transfer/camera map must be frozen before target-bearing data are opened.
Result / sigma
GREEN CONSTRUCTOR / YELLOW PLATFORM AND OBSERVATION. The theorem, sixteen-gate validator, positive and hostile fixtures, no-programming firewall, ordinary-null completeness gate, and fail-closed outcome grammar are complete. No existing platform has yet supplied a fully populated passing certificate, so no empirical A1 pull is assigned.
Book anchor
Physical-terminal concept DOI 10.5281/zenodo.21739215; QTT Main Book v10.01 pp. 48-52, 92, 235-237, 541-542, and 889-894; downstream concept families include quantum clock 10.5281/zenodo.21674815, geometric holonomy 10.5281/zenodo.21673340, flyby handshake 10.5281/zenodo.21674819, and the two-test preregistration 10.5281/zenodo.21376520.
Next check / falsifier
An experimental team must specialize the blank certificate to one carrier, freeze all thresholds and detector degree before data, prove a continuous completed-event memory chain, populate P16 with a target-blind conventional-model ledger and held-out adequacy controls, demonstrate that ordinary free evolution and programmed π/8/CHSH controls fail the gate, then run one sealed adjudication. A failed gate is an apparatus-ineligibility result, not a theory verdict.
Pull history
Version 1.1 preserves the carrier-independent physical-terminal constructor and adds P16 ordinary-null completeness. The current certificate requires completed-event memory, source-continuity, overwrite, readout, chronology, target-programming, and a target-blind conventional-model ledger before any platform may activate an A1 comparison.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-08-06 under concept DOI 10.5281/zenodo.21739215
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21739215. Populate @@QTTPROTECTED0@@, run the included validator, and preserve the pre-data chronology. If GPT=0, emit INELIGIBLE: NO THEORY VERDICT. If GPT=1, freeze q and compare R with 1 and cos(π/8)q without learning the camera or transfer map from target-bearing rows.
Predictions and CLEAR Testsactivation-gated laboratory protocol and ordinary-artifact eligibility closed / hardware activation and blinded execution pending
no observed pull; registered 7.612% point separation only

Monitored-Recurrence Reference-Switch Test

Version 2.02 keeps the sealed monitored-recurrence fork unchanged and adds a separate ordinary-parasitic-interference eligibility gate. The laboratory handoff now requires an upstream physical-terminal certificate, target-blind Type-I/Type-II artifact controls where applicable, a finite-horizon first-detection likelihood, reciprocal device and scheduler swaps, an irreversible pre-data seal, and six machine-exclusive outcomes. A failed artifact packet returns INELIGIBLENOTHEORY_VERDICT; it cannot retune the A1 target or an observed landing.

In standard language
In mainstream terms, this is a preregistered two-point discrimination experiment built from first-detection resonance roots. Two devices and two independent oscillator chains exchange source and laboratory roles, while a sealed finite-sample likelihood and full covariance decide between the ordinary point R=1 and the conditional A1 point R=cos(π/8). The comparison is dormant unless all sixteen apparatus-eligibility gates, including the target-blind ordinary-null completeness gate, pass, and the current record is a laboratory protocol rather than an observed result.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-08-03 under public concept DOI 10.5281/zenodo.21703683 (Version 2.02)
Comparator released
Future qualified blinded execution only. Existing first-detection, recurrence, quantum-control, oscillator, and clock-comparison experiments establish carrier or apparatus capabilities; none supplies the sealed terminal graph and reciprocal MRRS packet required for an A1 verdict.
Upstream rails
first-detection resonance rootsexact finite-N categorical likelihoodtwo-device reciprocal role swapsixteen-gate Physical Terminal certificateP16 ordinary-null completenessrank-two terminal Jacobianirreversible pre-data sealsix-outcome machine adjudication
Sector
Foundations / monitored quantum recurrence / activation-gated reference switching
Concept under test
For device d and preregistered resonance j, ydj=log(x·_dLj/x·_dAj). The generalized least-squares mean Δhat and RMRRS=exp(Δhat) compare the ordinary point R0=1 with the conditional A1 point RA1=cos(π/8). The A1 point is dormant until the current sixteen-gate product GPT=prodi Pi, including P16 ordinary-null completeness, equals one and the separately sealed ordinary-artifact gate GPI equals one; otherwise the legal result is TARGETNOTACTIVATED or INELIGIBLENOTHEORY_VERDICT.
Observable / dataset
Four preregistered first-detection resonance roots measured across two devices, two independent oscillator chains, four reciprocal role cells, and eight supercycles: 81 x 2048 x 8 x 2 x 2 x 4 = 84,934,656 primary trajectory attempts. Each root is obtained from the exact finite-N categorical likelihood, including the no-detection category, with target-blind scan permutations, Hamiltonian/process tomography, hidden timing injections, a complete clock graph, numerical terminal-Jacobian rank certification, and joint covariance retained.
QTT target
After GPT=1, the fixed hypotheses are Δ0=0, R0=1 and ΔA1=log cos(π/8)=-0.0791735919101875…, RA1=0.9238795325112867…. Each equivalence region has frozen log-space half-width 0.025, the design gate is SE(Δhat)≤0.006, and a point classification must exclude the competing point by at least five standard deviations.
Result / sigma
YELLOW/SEALED/EXECUTION PENDING. The 38-page v2.02 release passes 54 independent protocol, ordinary-artifact, clean-reconstruction, and render checks. A 400+400 synthetic planning campaign gives uΔ=0.0010808000 and a 73.25-standard-error point separation under its printed assumptions. The synthetic artifact validator checks both a clean pass and a Type-II failure path; neither is hardware evidence. This certifies software path and planned power only; no hardware activation, laboratory observation, or empirical A1 pull is claimed.
Book anchor
MRRS concept DOI 10.5281/zenodo.21703683; Physical Terminal concept DOI 10.5281/zenodo.21739215; A1-CHSH structural-identity concept DOI 10.5281/zenodo.19979594; QTT Main Book v10.01 pp. 158-160, 235-237, 445-449, 541-542, 552-553, and 560-562.
Next check / falsifier
An experimental team must complete and hash the platform execution contract before target-bearing recurrence data are opened, pass all sixteen Physical Terminal gates including P16 ordinary-null completeness and the ordinary-artifact eligibility gate, retain the raw first-detection/no-detection counts and full covariance, execute the registered classifier once, and report TARGETNOTACTIVATED or INELIGIBLENOTHEORY_VERDICT whenever the apparatus fails its entrance conditions.
Pull history
Version 2.02 preserves the carrier-independent Physical Terminal constructor and its sealed ordinary/A1 targets, while adding a target-blind ordinary-parasitic-interference eligibility gate. It requires Type-I/Type-II controls for a heterodyne optical build or a justified non-optical equivalent, and treats a failed artifact packet as ineligible rather than as a source retune.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-08-03 under public concept DOI 10.5281/zenodo.21703683 (Version 2.02)
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21703683. Validate the platform packet and ordinary-artifact packet before target-bearing data, require GPT=GPI=1, fit every root with the full finite-N first-detection/no-detection likelihood, form ydj=log(x·_dLj/x·_dAj), compute the joint-covariance generalized least-squares Δhat, and run the packaged six-outcome classifier once. Never infer the camera, artifact correction, exclusions, regularization, or terminal rank from the observed landing.
Predictions and CLEAR Teststwo independent fixed-target tests sealed / complete raw-data pipelines / laboratory execution pending
no observed pull; registered 7.612% point separation only

Absolute-Clock Two-Test Preregistration

Version 3.1 preserves the two independently sealed and independently judged experiments from Version 3.0 and adds post-seal ordinary-null completeness for rotating atomic and ring-cavity platforms. Test 1 is a four-history matter-wave Sagnac Gram test; Test 2 is a same-sample Faraday reference-switch test reconstructed from complete H,V,D,A,R,L outcomes. Both use the same fixed-target ratio while keeping their apparatus transfer maps, controls, covariances, and verdicts separate.

In standard language
In mainstream terms, this is a preregistered QTT target for Test 1 uses the rotation-odd first Fourier phasor from complete Ramsey-phase scans in four physical terminal-reference histories. Test 2 records H,V,D,A,R,L at both field signs, forms Z=S1+iS2 and D(F)=(Z+−Z^-)/2, and retains S3 as the ellipticity, physicality, and leakage control. The production analysis propagates the full 18-dimensional covariance rather than substituting diagonal or marginal errors.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-08-06 under concept DOI 10.5281/zenodo.21376520
Comparator released
Future blinded execution of Test 1 and Test 2. Existing Sagnac, atom-chip, Faraday-rotation, and polarization-optics results establish instrument capabilities and controls only. They do not populate the registered four-history packets and are not counted as absolute-clock observations.
Upstream rails
matter-wave Sagnac phasorsame-sample Faraday Stokes phasorfour-history Gram ratioordinary-overlap certificatestarget-blind camera correctionscos(π/8) projectionCHSH-angle contamination no-goseparate sealed unblinding
Sector
Foundations / matter-wave interferometry / magneto-optical clock comparison
Concept under test
For d in {S,F}, Rd=[1/(Cd Ndordinary)] √(|DτT(d) DTtau(d)|/|Dtautau(d) DTT(d)|). Cd is a target-blind camera correction and Ndordinary is an independently frozen ordinary cross-history overlap. Neither may be learned from target-bearing rows. Full sensitive-history calibration or deliberately programming a 22.5-degree, 45-degree, CHSH-standard, or equivalent operation makes the clock factor non-identifiable and forces NO THEORY VERDICT.
Observable / dataset
Test 1 uses the rotation-odd first Fourier phasor from complete Ramsey-phase scans in four physical terminal-reference histories. Test 2 records H,V,D,A,R,L at both field signs, forms Z=S1+iS2 and D(F)=(Z+−Z^-)/2, and retains S3 as the ellipticity, physicality, and leakage control. The production analysis propagates the full 18-dimensional covariance rather than substituting diagonal or marginal errors.
QTT target
Only after every topology, camera, ordinary-overlap, covariance, raw-block completeness, power, chronology, and no-programming gate passes do the fixed points activate: Rstandard=1 and RQTT=cos(π/8)=0.9238795325112867. The tests are not combined post hoc; each must earn its own label. Ambiguous topology, incomplete accepted blocks, target-derived transfer, or post-data repair produces NO THEORY VERDICT.
Result / sigma
YELLOW/SEALED/EXECUTION PENDING. Version 3.1 starts from raw detector counts, preserves both production extractors and the registered classifier, and adds the Reilly-Holland centre-of-mass/spin rotation terms, hyperfine shift, rotational Rontgen interaction, and the P16 fail-closed conventional-model ledger. In 4,000 synthetic trial packets the expected registered label was recovered in every branch; the Wilson 95% lower classification bound was 0.9961732415 and the largest propagated ratio uncertainty stayed below 0.0015. These are software-path and power certificates, not laboratory evidence. No qualifying target data are deposited and no empirical pull is assigned.
Book anchor
Two-test preregistration concept DOI 10.5281/zenodo.21376520; Folman phase-spine concept DOI 10.5281/zenodo.20123495; Artian time concept DOI 10.5281/zenodo.20761499; radiative Lorentz-stability concept DOI 10.5281/zenodo.21301312; QTT Main Book v10.01 pp. 554-573, 916-920, and 1192-1196.
Next check / falsifier
A laboratory team must replace the ephemeral release signer with its own external trust root, freeze apparatus-specific topology and ordinary-overlap certificates before target data, pass the Test 1 and Test 2 hardware controls independently, execute each blind packet once, and seek independent replication before treating either eligible point landing as evidence for a foundational interpretation.
Pull history
The concept family progressed from a two-channel proposal to a four-history operator, the Version 3.0 merged two-test contract, and the Version 3.1 post-seal ordinary-null completeness upgrade. Earlier seals and no-go results remain in the reconstruction archive. Version 3.1 adds the rotating-platform centre-of-mass/spin Hamiltonian rows, hyperfine shift, rotational Rontgen interaction, and fail-closed P16 ledger without changing either fixed target value, ratio orientation, compatibility band, power threshold, or classifier.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-08-06 under concept DOI 10.5281/zenodo.21376520
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21376520. Run the packaged raw-count extractors, production analyzer, signed preflight, covariance-marginal check, power simulator, and hostile-mutation audit. For Test 1, populate complete Ramsey-phase and rotation-sign blocks. For Test 2, populate H,V,D,A,R,L at both field signs and retain S3 controls. Freeze Cd and Ndordinary outside target-bearing rows. Reject any 22.5-degree, 45-degree, CHSH-standard, or equivalent programmed overlap, any ambiguous physical topology, incomplete accepted block, covariance substitution, or post-data repair.
Predictions and CLEAR Testsprospective four-history protocol sealed / hardware qualification and laboratory execution pending
no observed pull; fixed-point separation is 7.612%

A1 Geometric-Holonomy Reference-Switch Test

A prospective same-platform Berry-carrier test separates the ordinary geometric phase from the proposed A1 amplitude readout. It asks for four terminal reference histories, a target-blind ordinary cross-history transfer certificate, and the raw complex first phasors needed to judge a fixed ratio without retuning the source.

In standard language
In mainstream terms, this is a preregistered QTT target for Complex first phasors Dab in the four histories a,b in {T,τ}, measured with opposite winding on one autonomous geometric-holonomy platform. Historic fibre and neutron Berry records remain ineligible because they do not retain the required crossed terminal-reference phasors, target-blind transfer map, and covariance packet.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-07-29 under concept DOI 10.5281/zenodo.21673340
Comparator released
Future qualified same-platform execution only. Bitter-Dubbers neutron and Tomita-Chiao fibre experiments are carrier references, not populated A1 comparators.
Upstream rails
A1 two-clock projectionordinary Berry carrierfour-history first-phasor Gram ratiotarget-blind cross-history transferunprogrammed topologysealed covariance adjudication
Sector
Foundations / A1 geometric holonomy / reference-switch interferometry
Concept under test
The ordinary Berry relation γB=-Ω/2 remains a carrier qualification. The A1 question is posed only at the terminal-reference amplitude level: after the ordinary cross-history map is certified independently, a same-platform four-history Gram ratio distinguishes the registered points Rstandard=1 and RQTT=cos(π/8).
Observable / dataset
Complex first phasors Dab in the four histories a,b in {T,τ}, measured with opposite winding on one autonomous geometric-holonomy platform. Historic fibre and neutron Berry records remain ineligible because they do not retain the required crossed terminal-reference phasors, target-blind transfer map, and covariance packet.
QTT target
Rgeo,clk=[1/Ncrossordinary] √(DτT DTtau/(Dtautau DTT)); eligible targets are Rstandard=1 and RQTT=cos(π/8)=0.9238795325112867. A target-programmed π/8 or π/4 preparation, target-derived calibration, incomplete topology, or missing covariance produces NO THEORY VERDICT.
Result / sigma
YELLOW/SEALED/EXECUTION PENDING. The theorem and release package close the estimator, carrier-qualification, target-programming, transfer-certificate, and archival-ineligibility gates. They do not claim an observed A1 result, a Berry-phase deficit, or evidence from legacy data.
Book anchor
Geometric-holonomy reference-switch concept DOI 10.5281/zenodo.21673340; QTT Main Book v10.01 pp. 159-172 and 889-892. Historical carrier references: Bitter and Dubbers (1987), Tomita and Chiao (1986), and the modern neutron reanalysis cited in the release package.
Next check / falsifier
A laboratory team must freeze the physical terminal-reference topology, demonstrate an unprogrammed hardware map, certify the target-blind ordinary crossed-history transfer, publish raw four-phasor covariance, and run the sealed adjudicator. A qualified landing near 1 favours the ordinary target; a qualified landing near cos(π/8) supports the stated A1 projection; every ineligible configuration is reported without a theory verdict.
Pull history
Version 1.0 is the first public geometric-holonomy reference-switch protocol in the corpus. It incorporates the earlier two-clock preregistration's no-programming discipline while separately proving that published neutron and fibre Berry records are not eligible four-history A1 packets.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-07-29 under concept DOI 10.5281/zenodo.21673340
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21673340. Freeze terminal-reference topology, winding orientation, ordinary cross-history transfer map, raw phasor extractor, covariance model, target-programming audit, and adjudication rule before reading target-bearing phasors. Compute Rgeo,clk=[1/Ncrossordinary] √(DτT DTtau/(Dtautau DTT)). If the apparatus contains a target-programmed π/8 or π/4 preparation, if the transfer map is learned from target-bearing data, or if the four phasors/covariance are incomplete, report NO THEORY VERDICT rather than a QTT classification.
Predictions and CLEAR Testsfour-history theorem sealed / physical terminal graph and laboratory execution pending
no observed pull; fixed-point separation is 7.612%

A1 Quantum-Clock Reference-Switch Test

A prospective delocalized-atomic-clock experiment retains the standard proper-time phase as a shared carrier and asks a separate terminal-reference question. Four physical τ/T histories, reversal-paired first clock-coherence phasors, and a target-blind ordinary cross-history map are required before the fixed A1 ratio is judged.

In standard language
In mainstream terms, this is a preregistered QTT target for First complex clock-coherence phasors Zab(±) for a,b in {τ,T}, recorded on one delocalized atomic clock under reversed proper-time geometries, together with raw population/fringe scans, joint covariance, physical terminal-topology receipts, and an independently frozen ordinary cross-history transfer.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-07-29 under concept DOI 10.5281/zenodo.21674815
Comparator released
Future qualified same-clock execution only. Current delocalized-clock and quantum-clock-interferometry literature establishes carrier feasibility, not an A1 terminal-reference observation.
Upstream rails
standard proper-time clock phaseA1 two-clock terminal projectionfour-history first-phasor Gram ratiotarget-blind ordinary transferphysical terminal topologyCHSH-angle contamination no-gosealed covariance adjudication
Sector
Foundations / quantum-clock interferometry / A1 terminal-reference switching
Concept under test
The conventional clock phase Δ phiclock0 Δ τ remains unchanged. The registered A1 statement begins only after that carrier check: one completed source-time record read between an Absolute Background Clock terminal T and a laboratory proper-time terminal τ carries the real amplitude projection cos(π/8). Software labels cannot substitute for two physical terminal architectures.
Observable / dataset
First complex clock-coherence phasors Zab(±) for a,b in {τ,T}, recorded on one delocalized atomic clock under reversed proper-time geometries, together with raw population/fringe scans, joint covariance, physical terminal-topology receipts, and an independently frozen ordinary cross-history transfer.
QTT target
Rqc,clk=[1/Ncrossordinary] √(DτT DTtau/(Dtautau DTT)), with Dab=√(|Zab+ Zab|). The eligible fixed points are Rordinary=1 and RQTT-A1=cos(π/8)=0.9238795325112867. Bare five-σ separation requires σ(R)≤0.0152241; the recommended design target is 0.005.
Result / sigma
YELLOW/SEALED/EXECUTION PENDING. Three adversarial audits close carrier substitution, physical-topology, ordinary-map, target-programming/CHSH, readout-exponent, covariance, and power gates. Synthetic ordinary and A1 packets recover their generating targets, certifying the analysis path only. No existing clock dataset contains the required four physical terminal histories, so no empirical A1 pull is assigned.
Book anchor
Quantum-clock reference-switch concept DOI 10.5281/zenodo.21674815; QTT Main Book v10.01 pp. 47-52, 139-145, 159-172, 892, and 894; related two-test preregistration concept DOI 10.5281/zenodo.21376520.
Next check / falsifier
An experimental team must implement two genuinely different terminal-reference architectures on one clock carrier, freeze the ordinary crossed-history transfer outside target-bearing data, forbid π/8, π/4, and CHSH-equivalent programmed overlaps, retain raw phasors and joint covariance, and execute the sealed two-point adjudicator. Failure of any eligibility gate produces NO THEORY VERDICT.
Pull history
Version 1.0 is the first public quantum-clock-specific four-history reference-switch theorem in the corpus. It preserves the standard ω0 Δ τ carrier and moves the A1 question to a separately certified terminal-reference amplitude statistic.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-07-29 under concept DOI 10.5281/zenodo.21674815
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21674815. Realize τ and T as physical terminal architectures, retain Zab(±) and joint covariance, freeze Ncrossordinary outside target-bearing data, and compute Rqc,clk=[1/Ncrossordinary] √(DτT DTtau/(Dtautau DTT)). Reject target-programmed π/8, π/4, CHSH-equivalent preparation, software-only terminal labels, target-derived transfer, incomplete covariance, or an uncertified readout exponent with NO THEORY VERDICT.
Predictions and CLEAR Testsmulti-route crossed-link theorem sealed / mission hardware, covariance, and execution pending
no observed pull; coefficient targets 0 versus 1

A1 Earth-Flyby Dual-Link Handshake

A prospective spacecraft protocol replaces retrospective flyby-anomaly relabelling with two simultaneous physical clock histories, crossed electronics roles, and at least two nondegenerate route orientations. Its central no-go theorem proves that one ideal central-force flyby with a free inter-link offset cannot identify the proposed A1 coefficient.

In standard language
In mainstream terms, this is a preregistered QTT target for For each route p, the crossed-role half-sum dp=(Δ yp,A+Δ yp,B)/2 and frozen geometry gp=<2(ΩE x r).v/c2>_p, with common navigation physics retained in both channels, full covariance, loopback, station-transfer, media, transponder, clock, and reacquisition controls.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-07-29 under concept DOI 10.5281/zenodo.21674819
Comparator released
Future qualified mission or dedicated spacecraft execution only. Historical Anderson-type flyby anomalies and public DSN/radio-science archives lack simultaneous crossed T/τ histories and therefore receive no A1 verdict.
Upstream rails
simultaneous physical T/τ linkscrossed hardware rolesEarth-rotation geometrymulti-route rank gatecovariance nuisance projectionprimary/holdout transferarchive-ineligibility firewall
Sector
Foundations / spacecraft radio science / A1 dual-clock handshake
Concept under test
One continuously phase-connected T-candidate history and one physically clock-gated/reacquired τ-candidate history co-propagate through nearly the same radio path. Repeating each route with the electronics roles swapped cancels the leading hardware offset. Multiple route orientations are mandatory because (ΩE x r).v=ΩE.(r x v) is nearly constant on one central-force flyby and otherwise lies in the offset nuisance span.
Observable / dataset
For each route p, the crossed-role half-sum dp=(Δ yp,A+Δ yp,B)/2 and frozen geometry gp=<2(ΩE x r).v/c2>_p, with common navigation physics retained in both channels, full covariance, loopback, station-transfer, media, transponder, clock, and reacquisition controls.
QTT target
κA1=(gT C−1 Pperp d)/(gT C−1 Pperp g), with HordinaryA1=0 and HQTT-A1:κA1=1. Eligibility requires gT C−1 Pperp g>0, sign and unit-coefficient transfer across held-out routes, crossed hardware roles, and σ(κA1)≤0.2 for a bare five-σ fork; the recommended target is 0.1.
Result / sigma
YELLOW/SEALED/EXECUTION PENDING. Three adversarial audits reject analysis-only arc splits, prove the single-route/free-offset rank failure, preserve all conventional DSN terms, and test role crossing, route reversal, nuisance projection, transfer, covariance, and power. Synthetic ordinary and A1 packets recover coefficients 0 and 1. Historical Anderson-type anomalies and public radio-science archives lack the required crossed physical graph and remain ARCHIVE INELIGIBLE: NO A1 VERDICT.
Book anchor
Earth-flyby handshake concept DOI 10.5281/zenodo.21674819; QTT Main Book v10.01 pp. 47-52, 159-172, 480-483, 495-498, 892, and 894; Absolute-Clock Laboratory Discriminator Atlas concept DOI 10.5281/zenodo.21428128.
Next check / falsifier
Design at least two, preferably opposite, route orientations with simultaneous dual-link histories and crossed electronics roles. Freeze ephemerides, ordinary navigation model, nuisance basis, covariance, geometry rank, primary/holdout split, and unblinding rule before opening target-bearing residuals. A single flyby with a free offset is ineligible by theorem.
Pull history
Version 1.0 replaces an archive-first flyby idea with a prospective crossed-link, multi-route preregistration. The third adversarial pass forced the single-route no-go theorem and materially changed the eligible experimental topology before publication.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-07-29 under concept DOI 10.5281/zenodo.21674819
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21674819. Build simultaneous continuous and physically gated/reacquired links, cross their electronics roles, acquire at least two nondegenerate route orientations, freeze the ordinary navigation model and covariance, verify gT C−1 Pperp g>0, and compute κA1=(gT C−1 Pperp d)/(gT C−1 Pperp g). A single route/free offset, analysis-only arc split, failed holdout transfer, or missing physical graph is INELIGIBLE NO THEORY VERDICT.
Predictions and CLEAR TestsGREEN source theorem / propagator discriminator derived / access pending
parameter-free source residual; laboratory camera pending

Finite Wave Packet and d'Alembert Shadow

The v4 theorem derives the complete two-sided bounded free packet space of the finite A1 real-J update, writes every integer-tick propagator in exact Chebyshev form, freezes the QTT-versus-continuum phase residual, and only then recovers the continuum d'Alembert equation as a smooth-access shadow.

In standard language
The wave row derives the unique A6 bounded free packet space, exact Chebyshev all-tick real-J propagator, and a coefficient-free directional phase residual with η1=0 and an exact one-rail null; the smooth wave equation is its access shadow.
Theory-side sensitivity
Empirical sensitivity is in a future camera-qualified multi-direction phase or time-of-flight comparator. Mathematical sensitivity is the source-to-readout transfer and open nonlinear completion; low-energy wave-equation recovery alone is not the discriminator.
QTT archived
2026-08-31 under concept DOI 10.5281/zenodo.20723081
Comparator released
Wave Dynamics v4.0 published 2026-08-31 under concept DOI 10.5281/zenodo.20723081; future source-clean, camera-qualified phase or time-of-flight comparators remain unopened audit gates.
Upstream rails
A1 real-J dialA6 spectral projectorexact Chebyshev all-tick propagatorparameter-free phase residualone-rail nulldirectional quadratic tensorsource-to-readout gatenonlinear no-go
Sector
Propagation / A1 wave shadow
Concept under test
Write Q=-Δ/4. A6 admits exactly HA6=Ran 1_[0,1](Q). On that packet space, C=I-2Q and R=2 √(Q(I-Q)) form an exact real-J orthogonal rotor. Every power is UA6N=[[TN(C),R U_{N-1}(C)],[-R U_{N-1}(C),TN(C)]]. The continuum field is the laboratory shadow, not the source primitive.
Observable / dataset
A qualified source-to-field camera measuring multi-tick phase transport across at least two declared source-frame directions, with the exact one-rail null as an internal control and source/emission physics separated from propagation readout.
QTT target
ΔΦN=N(Ω-K)=N K3(1-suma na4)/24+O(N K5), η1=0, η2=(1-suma na4)/24, and γ2=3 η2. The axis residual is exactly zero; simultaneous multi-rail propagation has a nonnegative directional coefficient.
Result / sigma
GREEN: the unique free bounded packet projector, exact real-J one-tick rotor, exact Chebyshev all-tick propagator, d'Alembert shadow, linear-channel absence, and parameter-free directional residual are derived. SOURCE-DERIVED / ACCESS OPEN: a laboratory camera and adequate sensitivity remain to be certified. CLOSED NO-GO: generic pointwise quadratic interactions do not preserve the free packet band. OPEN: a unique nonlinear capacity completion.
Book anchor
Wave-shadow concept DOI 10.5281/zenodo.20723081; QTT Main Book v10.01 A1/A4/A5/A6/A7 source-wave anchors and compact corpus ledger.
Source links
Next check / falsifier
Derive and freeze the source-to-field camera, ruler/orientation map, response, sensitivity, and covariance before opening a propagation comparator. A qualified nonzero one-rail residual, wrong directional tensor or sign, nonzero η1, or failure of the frozen Chebyshev phase law would falsify the scoped propagator consequence. A nonlinear claim still requires its own capacity-completion theorem.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-08-31 under concept DOI 10.5281/zenodo.20723081
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20723081. Diagonalize Q=-Δ/4, apply PA6=1_[0,1](Q), verify UA6T UA6=I, compare direct matrix powers with the Chebyshev form, recover the second-order recurrence, and derive ΔΦN=N(Ω-K). Verify η1=0, the exact axis null, and the face/body-diagonal coefficients before introducing any laboratory response.
Predictions and CLEAR TestsA7U-G source gap and visibility transport closed / direct floor observation pending
consistency-green; no floor signal claimed

A7U Molecular Visibility Transport

The molecular-visibility transport paper closes the source-gap/access-transport framework from the A7U finite chamber gap into profiled molecular visibility rows. Existing Pedalino/Arndt sodium-cluster and C70 data are consistency-green after apparatus-block profiling, but they are not claimed as a direct observation of the A7U floor.

In standard language
The matter-wave row asks whether A7U leaves a locked shape in molecular-visibility data after ordinary decoherence and apparatus blocks have been separated.
Theory-side sensitivity
Existing visibility rows are consistency checks after apparatus profiling. The decisive test is a locked nonconstant A7U-G shape, not a constant visibility offset.
QTT archived
2026-06-22 under concept DOI 10.5281/zenodo.20796924
Comparator released
Existing Pedalino sodium-cluster, C70 collisional-decoherence, and C70 thermal-emission records are ordinary-decoherence/apparatus controls. The decisive comparator is a future same-apparatus, multi-mass visibility audit with independent Ab calibration, raw counts, covariance, and a locked nonconstant A7U-G transport shape.
Upstream rails
A7U same-universe completionfinite chamber source gapvisibility transportapparatus-block profilingshape-only matter-wave audit
Sector
Foundations / A7U matter-wave access
Concept under test
The upstream A7U source theorem fixes the finite chamber structure before data: NGamma in N, qmin(Gamma)=2·π/NGamma, εmin(Gamma)=1/NGamma, and δG(Gamma)=2/NGamma·(1-1/NGamma). The transport paper then maps that source gap through Tvis into FjA7U and compares only the block-profiled shape, so a constant floor cannot be smuggled in as a fitted contrast loss.
Observable / dataset
Molecular matter-wave visibility rows: sodium-cluster interferometry, C70 collisional decoherence, C70 thermal-emission decoherence, and future same-apparatus multi-mass audits with independent contrast calibration and raw-count covariance.
QTT target
δG(Gammaj) → Tvis → FjA7U; Vobsbj=Ab VQM/envbj FjA7U εbj; sobsbj=Pib[log Vobsbj-log VQM/envbj]; sjA7U=Pib[log FjA7U]. Pib removes the apparatus-block mean, so only a frozen nonconstant source shape can survive.
Result / sigma
CLOSED framework theorem: finite chamber source gap and access transport map. CONSISTENCY-GREEN: existing Pedalino/Arndt rows after apparatus-block profiling. PENDING: direct A7U floor observation, which requires a frozen FjA7U shape, declared covariance, raw counts, and blind agreement before the source can be promoted from consistency to observation.
Book anchor
A7U molecular visibility concept DOI 10.5281/zenodo.20796924; upstream A7U distributed-bundle source concept DOI 10.5281/zenodo.20097247; QTT Main Book v10.01 A5/A6/A7, Access Law, Born/projection, and matter-wave source-access anchors.
Next check / falsifier
Do not use a parameter-count boast here: the decisive test is not fewer knobs, but a locked nonconstant A7U-G visibility shape. Freeze NGamma, Tvis, apparatus contrast handling, raw-count covariance, and the shape vector sA7U before opening visibility data. A single-block constant residual is degenerate with Ab unless Ab is independently calibrated.
Pull history
A7U molecular visibility transport is tracked under concept DOI 10.5281/zenodo.20796924. It uses the A7U distributed-bundle source theorem, concept DOI 10.5281/zenodo.20097247, as the upstream source paper.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-06-22 under concept DOI 10.5281/zenodo.20796924
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20796924 for the molecular visibility transport row and concept DOI 10.5281/zenodo.20097247 for the upstream A7U source theorem. Print NGamma and Tvis before reading data. Do not treat Fcoll/Fthermal physical rows as knobs that A7U defeats, and do not fit a constant visibility offset, CSL-like rate, hidden reservoir, or apparatus fudge factor as the A7U signal.
Predictions and CLEAR TestsStage-0 sealed / physical target activation pending / observation pending
no target data opened; no σ assigned

Fourth-Face Talbot-Lau Completed-Event Preregistration

This prospective seven-bin Talbot-Lau test seals the A7U source branch, algorithms, labels, controls, and fail-closed decision tree before target-bearing data. It does not treat the source-only feasibility vector as the final instrument prediction.

In standard language
This is the sealed next-stage matter-wave test. It fixes what QTT would add, but refuses to judge QTT until the real interferometer response and covariance have been frozen without looking at the target data.
Theory-side sensitivity
The sealed source forecast is not yet the laboratory target. Sensitivity depends on the independently frozen complex Talbot kernel, mass and velocity response, κ activation proof, covariance, nuisance basis, extraction operator, and replication rule.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Prospective execution only. The 2025 Pedalino public archive demonstrates platform readiness but does not supply the complete velocity-resolved visibility, covariance, ordinary-kernel, and path-provenance packet needed for retrospective adjudication.
Upstream rails
sealed source branchseven-bin first-harmonic shapeordinary complex Talbot kernelapparatus κ activationcovariance nuisance projectionfail-closed classifierindependent replication
Sector
Foundations / A7U matter-wave blind test
Concept under test
The source law fixes Δn(v), NGamma,n, and FnA7U before observation. A physical target exists only after the ordinary complex Talbot kernel, event weights, covariance, nuisance projector, extraction operator, and the apparatus-specific κ=1 proof are independently frozen and hashed.
Observable / dataset
A seven-bin, first-harmonic, shape-only molecular matter-wave residual after ordinary quantum/environmental transport and declared nuisance directions have been applied inside each velocity-bin integral.
QTT target
H0: yperp=0. HA7U: yperp=Pprof gphys, with gphysr=log|integral(Wr B1QM/env F1A7U dv)/integral(Wr B1QM/env dv)| and ∂ gphys/∂ y=0.
Result / sigma
STAGE-0 SEALED. The high-precision source-only vector is a feasibility forecast, not the physical target. Until every activation gate closes, the only lawful outcomes are TARGET-NOT-ACTIVATED or INELIGIBLENOTHEORY_VERDICT. The public Pedalino archive qualifies the platform but lacks the complete packet needed for a retrospective QTT verdict.
Book anchor
Fourth-Face Talbot-Lau preregistration concept DOI 10.5281/zenodo.22010227; A7U molecular visibility concept DOI 10.5281/zenodo.20796924; upstream A7U source concept DOI 10.5281/zenodo.20097247; QTT Main Book concept DOI 10.5281/zenodo.17527179.
Next check / falsifier
Before target data are opened, freeze and hash the physical Talbot kernel, velocity and mass response, event weights, covariance, nuisance basis, extraction operator, and the apparatus proof of κ=1. Then execute the blind classifier once and require independent replication before HARD GREEN.
Pull history
Version 1.0.1 is archived under concept DOI 10.5281/zenodo.22010227. The point-release corrects concept-DOI citation receipts only; it changes no scientific equation, branch, forecast, gate, threshold, or decision rule.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Use concept DOI 10.5281/zenodo.22010227. Verify the protocol seal, populate the activation certificate without target data, build gphys with the complex ordinary Talbot coefficient inside each bin integral, freeze covariance and nuisance projectors, and then run the blind classifier exactly once. Missing activation or nonfinite inputs fail closed rather than counting against QTT.
Predictions and CLEAR TestsStage-0 sealed / source transport theorem closed / configuration pair not activated / observation pending
R0 ≥ 5 and Rmove ≥ 5 required before target access; no observation yet

Two-Configuration Talbot-Lau Feature-Transport Preregistration

This separate Test B asks whether the A7U integer completed-event fingerprint moves between two independently calibrated Talbot-Lau configurations by one exact source-coordinate map. It leaves the single-configuration Test A and its historical seal unchanged.

In standard language
In mainstream terms, this is a preregistered QTT target for A joint fourteen-component first-harmonic residual from two seven-bin matter-wave configurations, with the A7U factor inserted inside each independently frozen complex Talbot/environment kernel before the modulus is taken.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Future comparator not released yet.
Upstream rails
A1-A7access railbook ledger
Sector
Predictions and CLEAR Tests
Concept under test
For source mass count Bq=Mq/mA, the Talbot phase is τq,n(v)=n2 h Lq/(dq2 mA Bq v). The parameter-free map ΛAB=LB dA2 BA/(LA dB2 BB) gives τB,n(ΛAB v)=τA,n(v), so the nearest-integer defect, NGamma, δG, and the frozen-branch A7U factor F all migrate exactly.
Observable / dataset
A joint fourteen-component first-harmonic residual from two seven-bin matter-wave configurations, with the A7U factor inserted inside each independently frozen complex Talbot/environment kernel before the modulus is taken.
QTT target
H0: yperp=0. HA7U-tr: yperp=str. Hstationary: yperp=sstat. The physical pair must satisfy R0≥5 against the ordinary null and Rmove≥5 against the same source-shaped feature left at the old laboratory velocity coordinates, with ∂(str,sstat,U,Σ)/∂ y=0.
Result / sigma
SOURCE TRANSPORT THEOREM CLOSED and STAGE-0 TEST SEALED with zero target-fitted QTT parameters. The configuration pair and physical target are not activated, and no observation is claimed. A GREEN-TRANSPORT-CANDIDATE requires a sequestered holdout or preregistered third configuration/species before HARD GREEN. An Access-Law η verdict additionally requires the separate projector-camera certificate.
Book anchor
Two-configuration Test B concept DOI 10.5281/zenodo.22282943; single-configuration Test A concept DOI 10.5281/zenodo.22010227; A7U molecular visibility concept DOI 10.5281/zenodo.20796924; upstream A7U source concept DOI 10.5281/zenodo.20097247.
Next check / falsifier
A laboratory must enumerate candidate configurations without target residuals, freeze both complex kernels, covariance, ordinary tangent inventory, two κ=1 path certificates, and the deterministic selected pair, then demonstrate both five-σ design gates before unblinding. An activated null is a scoped falsifier of this A7U transport branch; an unactivated or underpowered run is not.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Predictions and CLEAR Testslocked scaling prediction / external comparator pending
no σ yet

Toponium 14 TeV Scaling

This is the future-facing sibling of the 13 TeV threshold row and the cleanest stress test of the v4 beam-access luminosity operator.

In standard language
In mainstream terms, this is a preregistered QTT target for Future or reprocessed 13.6/14 TeV quasi-bound t tbar threshold cross-section in a declared CMS/ATLAS analysis channel.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-06-26 under concept DOI 10.5281/zenodo.20123498.
Comparator released
Future 13.6/14 TeV threshold comparator not released yet.
Upstream rails
beam-access13→14 TeV scalingpseudoscalar coreblind small-x audit harness
Sector
Collider / top threshold prediction
Concept under test
Same threshold-core plus Artian beam-access rail, transported only by the declared finite-binomial gluon luminosity ratio.
Observable / dataset
Future or reprocessed 13.6/14 TeV quasi-bound t tbar threshold cross-section in a declared CMS/ATLAS analysis channel.
QTT target
R14/13QTT = 1.0034910755561, giving σ13.6 = 8.495628420334096 pb and σ14 = 8.504974289158433 pb from the printed v4 locked-prediction file.
Result / sigma
Prediction printed in v4.0; no public 13.6/14 TeV threshold-corridor σ is assigned yet. This row should remain YELLOW until a declared comparator exists.
Book anchor
QTT Main Book v10.01, pp. 1071-1072; v4.0 locked-prediction JSON inside the toponium release package.
Next check / falsifier
Compare against a declared 13.6/14 TeV threshold analysis without changing λA, the beam-access ratio operator, or the 13 TeV normalization.
Pull history
v4.0 locks the future-facing top-threshold ratio and opens preregistered Higgs/dijet beam-access ratio rows in the release package; those rows are ratio/audit rows, not full lab cross-section claims.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-06-26 under concept DOI 10.5281/zenodo.20123498.
Reproduce / audit note
Use the v4 @@QTTPROTECTED0@@ inside the release ZIP. Hold Mη=343.116 GeV, λA=0.666951, and the finite-binomial Lgg operator fixed; compute R14/13=Lgg(Mη2/142 TeV2)/Lgg(Mη2/132 TeV2)=1.0034910755561. A future comparator must be declared before any σ is assigned.
Predictions and CLEAR Testsstructural observation test
qualitative many-σ support; no single-number fit

G1 Galaxy Morphology Curvature Law

G1 is now read as a piece of the Renewal Ledger source-kernel program: strong baryon-curve morphology coupling is real, but the no-retune quantitative rotation-curve pass still has to be declared and run.

In standard language
In mainstream terms, this is a preregistered QTT target for SPARC/Renzo-style coupling between baryon morphology and rotation-curve features.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Renewal Ledger 2026-06-11 consolidation plus SPARC/Renzo-style morphology literature; quantitative no-retune QTT fit pending.
Upstream rails
source kernelbaryon curvatureRAR/BTFRSPARC route
Sector
Galaxy morphology / Renewal Ledger
Concept under test
Galaxy residual acceleration as a baryonic curvature/readout law inside the fixed-coefficient source-kernel branch.
Observable / dataset
SPARC/Renzo-style coupling between baryon morphology and rotation-curve features.
QTT target
gobs - gN proportional to -nabla2 ln Σb in the QTT morphology shadow.
Result / sigma
Book calls the structural coupling effectively many-σ against randomness, while refusing a premature single-number QTT fit.
Book anchor
Renewal Ledger concept DOI 10.5281/zenodo.20643892; QTT Main Book v10.01, pp. 535 and 1209-1211.
Next check / falsifier
Run a declared SPARC-style fit with no per-galaxy hidden acceleration parameter.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Predictions and CLEAR Testscosmology prediction
no σ yet

Redshift Evolution of the MOND-Like Acceleration Scale

The Renewal Ledger treats MOND's a0 as a derived acceleration-knee readout of the clock/source-kernel branch, which makes redshift evolution a decisive live test.

In standard language
In mainstream terms, this is a preregistered QTT target for BTFR/RAR zero-point evolution and cluster residuals as a function of redshift.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Future homogeneous high-z RAR/BTFR comparator; current citable branch is the Renewal Ledger concept DOI 10.5281/zenodo.20643892.
Upstream rails
Renewal LedgerABC/WVa0(z)clock projection
Sector
Cosmology / galaxy acceleration
Concept under test
ABC/WV clock closure, Renewal Ledger source kernel, and galaxy acceleration knee.
Observable / dataset
BTFR/RAR zero-point evolution and cluster residuals as a function of redshift.
QTT target
a0(z1)/a0(z2) should follow the QTT clock/source-kernel redshift law rather than stay as a fitted universal MOND constant.
Result / sigma
Prediction printed in the Renewal Ledger branch; no decisive redshift-evolution σ assigned yet.
Book anchor
Renewal Ledger concept DOI 10.5281/zenodo.20643892; QTT Main Book v10.01, pp. 535-538 and pp. 1210-1211.
Next check / falsifier
Compare with homogeneous galaxy samples where stellar population, gas, and lensing selection are declared before reading the trend.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Predictions and CLEAR Testslocked QCD sheet-scale prediction packet
source values locked; downstream rows pending

QCD Sheet-Scale Downstream Prediction Packet

Once the A6 v4.0 compact-color kernel plus βZ/Haar-root chain locks √(σ3), several downstream QCD/HVP/chiral/glueball rows become no-retune prediction rails. They should be tested as source-plus-access rows, not as fitted pole masses or channel fractions.

In standard language
In mainstream terms, this is a preregistered QTT target for Source-to-pole vector rows, muon-HVP centroid-compressed source weights, ρ→π π width, pion decay scale access, and pure-gauge glueball mass rows.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-06-18 under concept DOI 10.5281/zenodo.20744161.
Comparator released
Future source-access-pole maps, HVP row cards, ρ-width convention rows, chiral-scale audits, and pure-gauge glueball reruns.
Upstream rails
A6 half-shareσ3HVP vector sourcechiral railglueball transferρ-width rail
Sector
QCD / HVP, vector, chiral, glueball predictions
Concept under test
The same locked QCD sheet scale must feed vector source centroids, HVP source-centroid weights, the ρ-pipi fold-width rail, chiral source scales, and glueball absolute-scale tables.
Observable / dataset
Source-to-pole vector rows, muon-HVP centroid-compressed source weights, ρ→π π width, pion decay scale access, and pure-gauge glueball mass rows.
QTT target
Mρsrc=√(3) √(σ3)=769.469029 MeV; Mphisrc=(4/3)Mρsrc=1025.958705 MeV; HVP weights=(0.84421586,0.09380176,0.06198237); gρ π πQTT=6 with Gammaρ→pipi≈148.66 MeV; fπ,src=90.682795 MeV; Fχ=92.038391 MeV; mG=rG √(σ3).
Result / sigma
No post-audit central-value σ is assigned here yet. The values are locked prediction/readout targets downstream of concept DOI 10.5281/zenodo.20744161, with HVP, pole-map, chiral, and glueball access conventions still needing declared execution rows.
Book anchor
A6 half-share concept DOI 10.5281/zenodo.20744161; HVP source-access concept DOI 10.5281/zenodo.20732034; glueball concept DOI 10.5281/zenodo.20571454; QTT Main Book v10.01 pp. 583-620 and 1008-1020.
Next check / falsifier
Rerun the HVP vector rows, ρ-width access row, chiral scale row, and glueball table with √(σ3)=444.253151 MeV fixed. Mark source-green rows separately from access-pending rows, and do not tune pole conventions or weights to observed masses.
Pull history
Downstream prediction packet refreshed from concept DOI 10.5281/zenodo.20744161 after v4.0 closed compact-color kernel uniqueness upstream of the βZ/Haar-root chain.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-06-18 under concept DOI 10.5281/zenodo.20744161.
Reproduce / audit note
Hold √(σ3)=444.25315096 MeV. Then compute Mρsrc=√(3)·√(σ3), Mphisrc=(4/3)Mρsrc, HVP centroid weights from the muon kernel, fπ,src=√(σ3)/√(24), Fχ=fπ,src·exp(1/(2·ρ2)), and glueball masses mG=rG·√(σ3). Do not fit pole masses, branching fractions, or channel weights.
Predictions and CLEAR Testscross-sector boundary grammar
no σ yet

Boundary Half-Share Rule Across Sectors

The paper turns the A6 half-share into a portable grammar: a minimal symmetric boundary crossing has two sides and therefore carries a one-half share unless an explicit higher-structure theorem says otherwise.

In standard language
In mainstream terms, this is a preregistered QTT target for Future sector derivations where boundary coefficients appear, including PMNS coefficient packets, HVP row topology, chiral folds, and color-boundary readout maps.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-06-18 under concept DOI 10.5281/zenodo.20744161.
Comparator released
Future sector papers and derivation audits.
Upstream rails
A6 half-shareboundary coefficientPMNS coefficient packetHVP topologyno-smuggling firewall
Sector
Cross-sector / A6 boundary grammar
Concept under test
The rule prevents arbitrary boundary multipliers. In a single minimal crossing, QTT should not freely choose 1/3, 2/3, or 1 when the local object is an unbiased two-side capacity transfer.
Observable / dataset
Future sector derivations where boundary coefficients appear, including PMNS coefficient packets, HVP row topology, chiral folds, and color-boundary readout maps.
QTT target
minimal symmetric boundary crossing => 1/2 share; for the PMNS boundary coefficient, b=(1/2)(1/3)=1/6.
Result / sigma
This is a grammar prediction rather than a present σ row. The Observatory keeps it visible so later papers must either use the half-share or explicitly print why the crossing is not the minimal symmetric two-side case.
Book anchor
A6 half-share concept DOI 10.5281/zenodo.20744161; PMNS source-access concept DOI 10.5281/zenodo.20735493; QTT Main Book v10.01 A6/A7 boundary and PMNS anchors.
Next check / falsifier
Audit new boundary coefficients against this rule before assigning green status. A legal sector using a different single-crossing coefficient must print its extra structure rather than absorb the mismatch in prose.
Pull history
The half-share paper turns one QCD hinge into a reusable rule for minimal symmetric boundary crossings.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-06-18 under concept DOI 10.5281/zenodo.20744161.
Reproduce / audit note
For a declared minimal symmetric boundary crossing, count the two local sides before assigning any coefficient. The default legal share is 1/2. The PMNS boundary coefficient b=(1/2)·(1/3)=1/6 is a visible downstream example.
Predictions and CLEAR Testsno-go closed / conditional branch sealed / execution pending
0.505839 ppm anchor-only target uncertainty; no eligible prospective data

Universal Endpoint-Gain Tier-K Preregistration

The new record makes a previously implicit gravity hinge explicit. Its countermodel proves that the core source axioms bound an endpoint-gain family but do not themselves select full gain; a separately named, frozen physical hypothesis selects the gain-one branch for prospective testing.

In standard language
In mainstream terms, this is a preregistered model-selection test. A no-go theorem leaves a bounded response-gain family; a separately stated saturation hypothesis is evaluated only by later, independent high-precision measurements. It is not an observed determination of a new coupling.
Theory-side sensitivity
The Tier-K no-go is conditional on its declared local real-linear SO(3)-equivariant camera class. The prospective branch is sensitive to its frozen two-class eligibility rule, covariance receipt, standard-theory subtraction, and three-prior Bayes-factor gate; none may be learned from the eventual landing.
QTT archived
2026-08-15 under concept DOI 10.5281/zenodo.21955408
Comparator released
Only qualified post-freeze G determinations count. Historical G values are ineligible as prospective evidence.
Upstream rails
A2 endurance currentA5-X completed-event supportA6 per-address capacityA7 bundle closurelocal isotropic cameraEFA-G1
Sector
Gravity / source-to-laboratory endpoint gain
Concept under test
Within the declared pointwise local, real-linear, origin-preserving, SO(3)-equivariant source-to-laboratory camera class, Gendg GA with 0≤χg≤1. Endpoint Faithfulness EFA-G1 is the additional source-to-laboratory statement that selects χg=1; it is not relabelled as a consequence of A2, A5-X, A6, and A7.
Observable / dataset
Eligible post-freeze gravitational-coupling determinations in two independent measurement classes, one torsion/pendulum and one non-torsion class, each with fixed covariance and at most 0.5 ppm relative standard uncertainty.
QTT target
G0=6.674300783009366×10−11 m3 kg−1 s−2 with anchor-only u0=0.505839 ppm. GAIN-GREEN requires p>0.05, every eligible |z|<2, and Bayes factor B>100 against the full χg in [0,1] counterfamily under all three frozen priors.
Result / sigma
No prospective datum is eligible at publication. Historical G determinations are comparators and training context, not evidence for the sealed Tier-K branch.
Book anchor
Tier-K preregistration concept DOI 10.5281/zenodo.21955408; Newton/G concept DOI 10.5281/zenodo.20057430; A2 Einstein-field concept DOI 10.5281/zenodo.20763263.
Next check / falsifier
Wait for qualified post-freeze measurements. Changing the source/access map, priors, covariance, eligibility rule, or target after unblinding voids this row rather than repairing it.
Pull history
Published 2026-08-15 under concept DOI 10.5281/zenodo.21955408. The record separates the existing Newton/G endpoint expression from the independent gain-one selection instead of silently importing that selection into A2, A5-X, A6, or A7.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-08-15 under concept DOI 10.5281/zenodo.21955408
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21955408. Verify the no-go counterfamily Pχ(J)=χ J/tA, the frozen target and uncertainty, both measurement-class requirements, all three priors, covariance receipt, standard-theory subtraction, and the exact pass/fail classifier before opening any eligible data.
Predictions and CLEAR TestsSEALED preregistration / execution pending
max |z| 5

Record-Fan-Out Timing-Envelope Blind Test

A two-stage blind program separates ordinary quantum qualification from the QTT timing discriminator. Test A must first recover the standard fan-out/fidelity structure. Test B then asks whether the qualified timing partitions follow the sealed QTT complement without retuning the theorem.

In standard language
In mainstream terms, this is a preregistered QTT target for Primary circuit-QED execution plus one physically distinct implementation, with 2,500 terminal shots per setting, 2,000 tomography repetitions per basis, 20,000 bootstrap draws, one-third held-out settings, and blinded branch labels.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Future qualified circuit-QED execution and one physically distinct replication platform.
Upstream rails
ordinary Test A qualificationQTT Test B discriminatorphysical intertwiningtomographytopology twinsholdoutssecond technologyfive-outcome classifier
Sector
Foundations / blinded record-fan-out timing
Concept under test
The preregistration freezes fidelity corridors, N=1,…,4, every m partition, holdouts, topology twins, shot budgets, bootstrap count, artifact gates, two technologies, and a five-outcome classifier before target-bearing data are opened. Failure of an entrance gate is ineligible, not a QTT falsification.
Observable / dataset
Primary circuit-QED execution plus one physically distinct implementation, with 2,500 terminal shots per setting, 2,000 tomography repetitions per basis, 20,000 bootstrap draws, one-third held-out settings, and blinded branch labels.
QTT target
Execute the frozen timing-envelope statistic over fidelity corridors 0.15, 0.30, 0.50, 0.70, and 0.85 with ±0.025 tolerance, all N=1,…,4 and m=0,…,N. Require global significance ≥5 σ and prospective power ≥0.95 after all eligibility gates close.
Result / sigma
YELLOW/SEALED. The package passes 12/12 protocol checks. The legal outcomes are INELIGIBLENOTHEORY_VERDICT, REGISTEREDQTTCONSEQUENCE_FALSIFIED, QTTCANDIDATE, QUALIFIEDOTHEROR_CROSS_CHANNEL_ANOMALY, and AMBIGUOUSORUNDERPOWERED. No laboratory result is claimed.
Book anchor
Blind-test concept DOI 10.5281/zenodo.21902885; theorem concept DOI 10.5281/zenodo.21902886; Observation as Access concept DOI 10.5281/zenodo.20114403; QTT Main Book v10.01 finite-address, Born/projection, Access Law, and record anchors.
Next check / falsifier
Freeze the platform execution contract and hashes, complete target-blind qualification, open the Test B labels once, and publish every legal outcome. Independent replication is required before any field-level claim.
Pull history
Version 1.0 was sealed on 2026-08-12 before target-bearing data were opened, under concept DOI 10.5281/zenodo.21902885.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21902885. Preserve all frozen fidelity corridors, N/m partitions, holdouts, shot budgets, bootstrap count, chronology, artifact gates, and the exact five outcomes. Any failed entrance gate yields INELIGIBLENOTHEORY_VERDICT rather than a QTT falsification.
Predictions and CLEAR TestsPUBLIC PREREGISTRATION SEALED / platform execution pending
30 activation gates; no target-bearing data opened

Dynamic-Circuit Completed-Record and Timing-Access Extension

This sealed platform adapter converts context-conditioned dynamic circuits into a prospective completed-record-to-clock experiment. It preserves the parent target, adds a persistent mid-circuit record, audits every surviving controller and environment copy, and forbids any programmed path from the record label into the timing program.

In standard language
In mainstream terms, this is a preregistered QTT target for A dynamic-circuit platform with a named persistent record, complete terminal tomography, a statistically populated matched local channel, an independently calibrated timing mode, a frozen no-programmed-target control graph, and independent record-technology replication.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Future qualified dynamic-circuit timing holdout and independent record-technology replication. No target-bearing timing data were opened as of 2026-08-12.
Upstream rails
persistent mid-circuit recordfull terminal packetUhlmann fidelityunprogrammed timing modecontrol-graph firewalltechnology transferfive-outcome classifier
Sector
Foundations / dynamic circuits, completed records, and timing access
Concept under test
The completed-record camera is ηT=Fjoint2, where Fjoint is the Uhlmann fidelity of the full quantum-classical-environment terminal packet. The registered frontier is UTstar=|(1-ηT)Upsilontr+bN|. The canonical zero-background, unit-transfer branch is UTstar=1-Fjoint2.
Observable / dataset
A dynamic-circuit platform with a named persistent record, complete terminal tomography, a statistically populated matched local channel, an independently calibrated timing mode, a frozen no-programmed-target control graph, and independent record-technology replication.
QTT target
No record, memory, environment-monitor, pulse, feed-forward, scheduler, or target-literal edge may enter the timing program: R not→ C, M not→ C, and Emcm not→ C. After all 30 gates pass, test the frozen multirung relation UTstar versus 1-Fjoint2 without retuning.
Result / sigma
YELLOW/SEALED. The external dynamic-circuit archive reconstructs 161/161 ordinary quantum checks with maximum absolute discrepancy 1.11×10−16, but those programmed context and eraser rows are qualification only. No target-bearing timing data were acquired before the protocol seal, and no QTT support or falsification is claimed.
Book anchor
Dynamic-circuit extension concept DOI 10.5281/zenodo.21904993; parent blind-test concept DOI 10.5281/zenodo.21902885; source theorem concept DOI 10.5281/zenodo.21902886; Observation as Access concept DOI 10.5281/zenodo.20114403; QTT Main Book v10.01 finite-address, measurement-record, and access anchors.
Next check / falsifier
Populate the Stage-0 manifest before target acquisition; close all 18 inherited and 12 platform gates; acquire the independently calibrated timing holdout; run the exact five-outcome classifier once; and require transfer to a second record technology before candidate status. Any forbidden programmed path yields INELIGIBLENOTHEORY_VERDICT.
Pull history
Version 1.0 was hash-sealed before public deposit and published on 2026-08-12 under concept DOI 10.5281/zenodo.21904993 without changing the frozen protocol SHA-256 30324c4b790ac2e7860910535df8a96a2975dd6d6e4e550ba8a2152af18f1968.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21904993. Verify the frozen protocol hash, complete terminal boundary, ηT=Fjoint2, 30 activation gates, no-programmed-target control graph, hash-separated G0/G1/G2/G3 generations, and exact five terminal outcomes. A programmed record-to-clock path or failed gate is ineligible, never a QTT falsification.
Predictions and CLEAR TestsPUBLIC PREREGISTRATION SEALED / author arrays and laboratory execution pending
max |z| 5

Carrier-Deletion Finite-Window and Timing-Access Blind Extension

A separate sealed extension first tests a standard quantum-information claim: after the apparent carrier is physically reset, can a larger surrounding window recover the logical input? Only a qualified recovery packet may enter the independent QTT timing-access fork.

In standard language
In mainstream terms, this is a preregistered QTT target for A platform that can encode one logical input into a bounded neighborhood, physically reset the apparent carrier, reconstruct CPTP decoders on held-out instances, and measure a separate unprogrammed timing mode with a complete terminal audit.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-08-14 under concept DOI 10.5281/zenodo.21935062
Comparator released
External preprint arXiv:2608.12803, accessed 2026-08-14; exact arrays/scripts pending. Future qualified carrier-deletion timing execution and independent replication remain prospective.
Upstream rails
target-only decoderfinite-window decoderphysical carrier resetheld-out Choi fidelityindependent timing mode18 eligibility gatesfive-outcome classifier
Sector
Foundations / carrier deletion, finite-window recovery, and timing access
Concept under test
Test A freezes target-only, finite-window, and post-deletion recovery over resource ladders r=1,2,3 and L=4,6,8. Test B is conditional on the physical bridge Wdagger Me W=Palign and tests the canonical timing complement UTstar=1-Fedel. The published external median Q=0.516 is a standard-QM audit input and is forbidden as a QTT timing target.
Observable / dataset
A platform that can encode one logical input into a bounded neighborhood, physically reset the apparent carrier, reconstruct CPTP decoders on held-out instances, and measure a separate unprogrammed timing mode with a complete terminal audit.
QTT target
Five frozen fidelity corridors 0.15, 0.30, 0.50, 0.70, and 0.85 with ±0.025 tolerance; fixed Choi verifier Me=|Φ+><Φ+|; Fedel=(1+3Q_del)/4; conditional timing branch UTstar=1-Fedel; 18 eligibility gates; global significance ≥5 σ and power ≥0.95.
Result / sigma
YELLOW/SEALED. The protocol verifier passes 31/31 and the blank result packet correctly returns INELIGIBLENOTHEORY_VERDICT. No external arrays were used to tune a timing target, no laboratory timing result is claimed, and the parent seal remains unchanged.
Book anchor
Carrier-deletion extension concept DOI 10.5281/zenodo.21935062; parent blind-test concept DOI 10.5281/zenodo.21902885; theorem concept DOI 10.5281/zenodo.21902886; Observation as Access concept DOI 10.5281/zenodo.20114403.
Next check / falsifier
Obtain the exact author arrays/scripts for independent standard-QM replication, then populate the Stage-0 constructor packet before any target-bearing acquisition. Failed entrance gates remain ineligible rather than becoming a QTT verdict.
Pull history
Version 1.0 was hash-sealed before public deposit and published 2026-08-14 under concept DOI 10.5281/zenodo.21935062. It is a separate extension and does not mutate the parent test under 10.5281/zenodo.21902885.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-08-14 under concept DOI 10.5281/zenodo.21935062
Reproduce / audit note
Use concept DOI 10.5281/zenodo.21935062. Verify the protocol hash, five fidelity corridors, r/L resource ladders, fixed Choi verifier, physical reset, conditional bridge, 18 eligibility gates, five outcomes, and the prohibition on importing Q=0.516 into the timing target.
Predictions and CLEAR TestsSTAGE-0 SEALED / independent record qualification and physical activation pending
20-cell complex target surface frozen; no target-bearing data opened

Same-Central-Effect Work-Quadrature Loop Preregistration

One authenticated physical access route is required to control two separately measured consequences. The work arm first proves how much of a preparation record is physically available; an untouched closed quadrature loop then asks whether that same access effect enters the canonical commutator exactly as the QTT Access Law predicts.

In standard language
In mainstream terms, the work arm is a Maxwell-demon-style access calibration and the loop arm is a closed phase-space geometric-phase measurement. Standard quantum mechanics predicts that an idle record route does not change the normalized loop. QTT predicts one exact complex surface because it puts the same central access effect inside the canonical commutator.
Theory-side sensitivity
The test is sensitive to one linked operator claim, not merely to information-to-work conversion. A QTT verdict requires the full correlated 20-cell surface, both loop orientations, and all physical-route controls. One anomalous point, failed centrality, programmed feed-forward, omitted terminal outcomes, or a route mismatch cannot activate the theory verdict.
QTT archived
2026-09-01 under concept DOI 10.5281/zenodo.22236546.
Comparator released
Future qualified circuit-QED execution. Existing Maxwell-demon work experiments and continuous-variable geometric-phase experiments establish component feasibility and ordinary comparators only; they do not populate this same-route blinded surface.
Upstream rails
authenticated preparation recordone central effect Mindependent work calibrationclosed quadrature group commutatorfive-by-four exact surfacetarget-blind covariancesame-route certificateblind classifier
Sector
Foundations / circuit-QED work and canonical access
Concept under test
For one central access effect M, QTT uses [q,p]=J(I-M). The resulting closed displacement commutator is CQTT(phi)=M+exp(-J phi)(I-M). The independently normalized work fraction gives wjj, while the loop target normalized to the no-access route is Rjk=(1-ηj)+ηj exp(J phik). Ordinary quantum mechanics predicts Rjk=1 for an idle access route. The target Jacobian is frozen to zero: η and phi may not be learned from loop residuals.
Observable / dataset
A circuit-QED bosonic mode prepared in |+α> or |-α>, an authenticated binary preparation record, a hardware access route with a complete terminal alphabet, energy tomography on work copies, and ancilla Ramsey readout of closed displacement loops on untouched copies. Five access settings, four loop areas, and both loop orientations are frozen.
QTT target
wjj; RjkQTT=(1-ηj)+ηj exp(J phik); RjkQM=1 for η in {0,1/4,1/2,3/4,1} and phi in {π/4,π/2,3·π/4,π}. At η=1/2 and phi=π, the normalized QTT coherence is zero while the ordinary-QM target is one, but the primary verdict uses the complete correlated surface rather than this single cell.
Result / sigma
SEALED prospective discriminator. The work identity is a standard information-thermodynamic qualification and is not counted as QTT-exclusive evidence. Version 11.01 adds an append-only external record-sufficiency preflight without changing the protocol seal, target surface, estimator, covariance order, or four frozen file hashes. APPROVE establishes eligibility only; REFUSE or DEFER returns INELIGIBLENOTHEORY_VERDICT. No laboratory observation is claimed.
Book anchor
Same-central-effect preregistration concept DOI 10.5281/zenodo.22236546; Observation as Access concept DOI 10.5281/zenodo.20114403; QTT Main Book v10.01 A1 terminal ordering, A5-X completed record, A6 finite capacity, A7 closure, and Access-Law anchors.
Next check / falsifier
An independent team must first issue the provenance-bearing retained-record certificate. Only APPROVE plus every original Stage-1 hardware, same-route, matched-load, dummy-bit, late-route, erasure, zero-area, reversal, transport, crosstalk, power, and covariance gate permits the blind classifier to run. REFUSE or DEFER blocks both confirmation and falsification from that record.
Pull history
Version 1.0 was sealed and published on 2026-09-01 under concept DOI 10.5281/zenodo.22236546. The protocol seal, exact target surface, schemas, blind classifier, release hashes, and three adversarial audits precede all target-bearing laboratory data.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-09-01 under concept DOI 10.5281/zenodo.22236546.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.22236546. Rebuild the five-by-four complex surface and both orientations from the frozen CSV, verify the Stage-0 protocol hash, preserve the declared covariance coordinate order, and run the packaged 135-check verifier. During Stage 1, construct η from the authenticated route before loop-target access and forbid any fit of η or phi to the target residuals.
Predictions and CLEAR TestsCLEAR protocol
no σ yet

Access-Law Timing Tomography

This is one of the most QTT-specific future tests because it asks the lab to measure address alignment and timing uncertainty separately.

In standard language
In mainstream terms, this is a preregistered QTT target for Erasable shared-address records, conditional time-frequency widths, and independent address-alignment tomography.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Future timing-tomography comparator.
Upstream rails
access lawηaddrCLEAR protocol
Sector
Foundations / access timing
Concept under test
Observation as access and incomplete-address uncertainty relief.
Observable / dataset
Erasable shared-address records, conditional time-frequency widths, and independent address-alignment tomography.
QTT target
UT = 2 Δ Tcond Δ Ωcond = 1 - ηaddr; with durable leakage D, UT = 1 - ηaddr(1-D).
Result / sigma
Prediction printed; raw HOM visibility alone is not sufficient unless calibrated into the central address projector.
Book anchor
QTT Main Book v10.01, pp. 181, 189, 531, 1250; index notes pp. 868 and 1135.
Source links
Book anchor only
Next check / falsifier
A stable locked dataset with RQTT < 1 at decisive σ would falsify the access-law timing inequality.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Predictions and CLEAR Testsappend-only lock and five-outcome executor closed / true-data execution pending
max |z| 5

HVP Prospective Blind-Lock Executor

Version 2.0 preserves the original HVP lock, topology targets, row-card digest, and covariance digest byte for byte while adding a prospective fail-closed executor. Integrity, statistical power, qualified-other shape, and branch-failure scope are now separate objects; no true central-value packet has been opened.

In standard language
In mainstream terms, this is a preregistered QTT target for A future withheld HVP 2·π-ρ row card with frozen access topology, central values, covariance object, masks, likelihood, camera, and hashes, opened once through the packaged executor.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
The original lock predates the 2026-08-03 Version 2.0 executor. The current family is preserved under concept DOI 10.5281/zenodo.20354458; the source-access framework remains concept DOI 10.5281/zenodo.20732034.
Comparator released
Future withheld HVP row-card comparator. No present HVP central value was opened in the executor release.
Upstream rails
immutable v1 target hashesappend-only lineagetopologyordinary cameracovariancepowerfive-outcome executorqualified other-shapebranch-scoped failure
Sector
Muon g-2 / HVP prospective blind lock
Concept under test
The old preregistration remains the immutable target layer. A new append-only layer verifies lineage, topology, packet completeness, the ordinary camera, covariance, power, and chronology before any HVP branch verdict. A shape outside both registered branches is retained as a qualified other-shape result instead of being forced into a null or QTT confirmation.
Observable / dataset
A future withheld HVP 2·π-ρ row card with frozen access topology, central values, covariance object, masks, likelihood, camera, and hashes, opened once through the packaged executor.
QTT target
Retain the original 2-σ candidate corridor. A prospective branch exclusion requires |zn,d|≥5 after every integrity gate and the power gate pass. Missing lineage, topology, packet, ordinary model, covariance, or chronology yields INSUFFICIENT PACKET; adequate integrity but insufficient separation yields UNDERPOWERED.
Result / sigma
GREEN lineage and execution grammar / YELLOW observation. The append-only inheritance theorem, five-outcome executor, covariance rules, original-versus-new threshold separation, qualified other-shape route, and branch-scoped falsification theorem are closed. Five synthetic fixtures test software paths only; truedataopened=false and no HVP observation is claimed.
Book anchor
HVP blind-lock concept DOI 10.5281/zenodo.20354458; experimental-verdict governance concept DOI 10.5281/zenodo.21775175; HVP source-access concept DOI 10.5281/zenodo.20732034; QTT Main Book v10.01 pp. 584-620 and p. 1257.
Next check / falsifier
Populate one withheld row and covariance packet without changing the inherited target hashes, masks, topology, camera, or source. Run the executor once. A qualified branch failure remains local to the registered access row unless independent rows and a printed dependency theorem justify broader language.
Pull history
Version 2.0 is an append-only successor: it verifies the original target, row-card, and covariance hashes before applying any new eligibility or verdict rule. truedataopened=false.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
The original lock predates the 2026-08-03 Version 2.0 executor. The current family is preserved under concept DOI 10.5281/zenodo.20354458; the source-access framework remains concept DOI 10.5281/zenodo.20732034.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20354458. Verify inherited hashes; freeze topology, packet, ordinary model, camera, covariance, masks, likelihood, power, chronology, and branch scope; then run the five-outcome executor once. Missing integrity yields INSUFFICIENT PACKET, inadequate separation yields UNDERPOWERED, and a reproducible out-of-family residual is retained as OTHER SHAPE rather than being forced into a binary verdict.
Predictions and CLEAR TestsCLEAR protocol
no σ yet

Photon-Edge Noise/Heat/Cross-Power Stress Test

This is a same-device negative-control test for the photon edge and thermal-access scale.

In standard language
In mainstream terms, this is a preregistered QTT target for Ballistic plateau with same-cooldown noise, heat, and isolated cross spectra.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book/site ledger; public DOI integration pending
Comparator released
Future same-device noise/heat/cross-power comparator.
Upstream rails
α edgethermal accessnegative controls
Sector
QED / photon edge stress
Concept under test
Photon-edge capacity triad and no extractable equilibrium cross-power above the declared thermal access scale.
Observable / dataset
Ballistic plateau with same-cooldown noise, heat, and isolated cross spectra.
QTT target
ΛWH = 1 and no extractable equilibrium cross-power above fT = kB T / h after declared subtraction/profile rules.
Result / sigma
Protocol printed; no decisive same-device central-value σ yet.
Book anchor
QTT Main Book v10.01, pp. 114-117 and pp. 7123-7125; index note p. 1132.
Source links
Book anchor only
Next check / falsifier
Detuning, energy-dependent transmission, or inelastic backscattering are required negative controls.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book/site ledger; public DOI integration pending
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Predictions and CLEAR Testswaiting for observation
no σ yet

hhhh Quartic Higgs Self-Coupling

The quartic Higgs row is a clean yellow prediction, not a green observation.

In standard language
In mainstream terms, this is a preregistered QTT target for Collider-normalized quartic Higgs self-coupling.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Comparator released
Future precision triple/quartic Higgs collider comparator.
Upstream rails
scalar lockquartic HiggsCLEAR likelihood
Sector
Electroweak / Higgs self-coupling
Concept under test
Scalar-lock Higgs coupling readout table.
Observable / dataset
Collider-normalized quartic Higgs self-coupling.
QTT target
κ4QTT = 1; ghhhhQTT = 0.775734905663; λSMshadow = 0.129289150944.
Result / sigma
Current triple-Higgs data allow the point but are not precision-sharp enough to green-label it.
Book anchor
QTT Main Book v10.01, pp. 991-994; index notes pp. 1062 and 1125.
Source links
Next check / falsifier
Use the collider-normalized κ4 convention and the printed CLEAR likelihood before assigning any pull.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Predictions and CLEAR Testswaiting for observation
no σ yet; compatible data

Laboratory Antimatter Null-Access

The antimatter row is a present-day null-access prediction downstream of the matter-asymmetry theorem.

In standard language
In mainstream terms, this is a preregistered QTT target for Antiproton charge-to-mass, antihydrogen spectroscopy, and antihydrogen gravity.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Comparator released
BASE/ALPHA-era tests compatible; decisive intrinsic comparator future-facing.
Upstream rails
B-L seednull forceaccess symmetry
Sector
Antimatter / null access
Concept under test
Early B-L access seed freezes cosmic abundance, not a present-day antimatter force.
Observable / dataset
Antiproton charge-to-mass, antihydrogen spectroscopy, and antihydrogen gravity.
QTT target
(q/m)pbar/[-(q/m)p] = 1 + O(10−61), Δ νHbar/H / ν = O(10−61), and gHbar/gH = 1 + O(10−61).
Result / sigma
Existing BASE/ALPHA-era tests are compatible, but the row remains yellow until decisive intrinsic sensitivity exists.
Book anchor
QTT Main Book v10.01, pp. 507 and index notes pp. 861, 1126.
Source links
Next check / falsifier
A convention-locked antimatter likelihood reaching intrinsic sensitivity is required for a green or red label.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
v10.01 book ledger; public book DOI 10.5281/zenodo.17527179
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Predictions and CLEAR TestsGREEN finite enumeration / source angles / solar bridge / CKM micro-provenance / CP; YELLOW octant and CP-profile gates
max |z| 5.82

PMNS Source-Access Reference Framework v5.0

The v5.0 PMNS record preserves the finite first-order source-word enumeration closure and now prints the CKM micro-provenance bridge that supplies the solar row.

In standard language
A finite PMNS source-word search leaves one active word. The row then compares source-side mixing predictions to NuFIT checkpoints while keeping atmospheric-octant and access-likelihood issues yellow.
Theory-side sensitivity
The first-order source enumeration is closed; atmospheric-octant likelihood, CP-profile, Majorana/access rows, and full experiment covariance remain yellow.
QTT archived
2026-06-18 under concept DOI 10.5281/zenodo.20735493.
Comparator released
NuFIT 6.0 normal-ordering rows and NuFIT 6.1/JUNO checkpoint as reported in the PMNS source-access reference framework v5.0; decisive DUNE/Hyper-K/JUNO/atmospheric likelihood rows remain future audit gates.
Upstream rails
charged-lepton source basisneutral LIA basisreal-J PMNS rotorfinite angle-word enumerationconstructor firewallsolar Cabibbo interfaceCP-area theorem
Sector
Neutrino / PMNS source-access
Concept under test
The PMNS matrix is the real-J source/access orientation between the charged-lepton family basis and the neutral LIA basis; NuFIT rows are comparators, not constructors.
Observable / dataset
PMNS angles, CP phase, absolute neutrino scale, β endpoint, and neutrinoless double-β corridors.
QTT target
UPMNSsrc=(UEsrc)^(TJ) Uνsrc; |LPMNS(1)|=36; wstar=(htriangle,+b3,+bboundary,π); sCbridge=√(2)sin(π/20)(1+1/(10rho))=0.225042858584379; sin2 θ12=0.306880189271769; sin2 θ13=0.022257215708245; sin2 θ23=0.557296543842863; δPMNS=π; JPMNS=0.
Result / sigma
v5.0 reports GREEN finite first-order enumeration uniqueness, GREEN θ1323 source angles, GREEN solar bridge, GREEN CKM micro-provenance, GREEN CP-even branch, PASSSOURCEUNIQUE=1, QUARANTINEDCPSIDE_BRANCH=2, and SOURCEGATEEXCLUDED=32. The atmospheric octant branch and CP-profile likelihood branch remain live observational stress rows. NuFIT 6.1 keeps solar/reactor/UO sub-σ; IC24+SK lower-octant θ23 remains a +5.82 σ stress row.
Book anchor
PMNS source-access concept DOI 10.5281/zenodo.20735493; QTT Main Book v10.01 pp. 158-162, 1113-1114, 1134-1138.
Next check / falsifier
Keep the finite source enumeration and CKM-derived solar bridge fixed while testing public likelihood grids, atmospheric-octant data, CP-profile rows, and Majorana-access rows. Do not use observed PMNS angles or lab probabilities to rewrite the source word.
Pull history
Supersedes the v4.1/v4.5/v4.6 Observatory PMNS wording by keeping the finite first-order enumeration closed and promoting the CKM micro-provenance bridge to a printed source certificate, while atmospheric octant, CP-profile, Majorana, and access rows stay visibly yellow.
Enumeration card
Legal space
2 · 3 · 3 · 2 = 36 first-order PMNS source words.
Gates
Nonzero family-height, LIA orientation, charged/neutral-boundary, and zero-CP-area gates.
Survivors
One active word wstar = (htriangle,+b3,+bboundary,π).
Timestamp
Closed inside the PMNS source-access concept DOI family before NuFIT checkpoint language.
Reproduce / audit note
Use concept DOI 10.5281/zenodo.20735493. Enumerate LPMNS(1)=H13 x B23 x B12 x DCP with 2·3·3·2=36 words, apply the nonzero family-height, LIA-orientation, charged/neutral-boundary, and zero-CP-area gates, keep the unique active word wstar=(htriangle,+b3,+bboundary,π), and compute sCbridge=√(2)sin(π/20)(1+1/(10rho)) before the solar row. Do not use NuFIT angles, CP phase, or lab probabilities to write the source matrix.
Predictions and CLEAR Testspending material execution
no σ yet

Kerr Constant from Artian Geometry

The Kerr paper is live on Zenodo. The Observatory marks it as a pending material-execution prediction rather than an observed constant.

In standard language
In mainstream terms, this is a preregistered QTT target for Material Kerr constants under declared wavelength, temperature, and polarizability access rails.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-06-05 under concept DOI 10.5281/zenodo.20539673
Comparator released
Future material Kerr-ratio audit.
Upstream rails
cos(π/8)Kerr sourcematerial polarizability
Sector
Optics / Kerr material test
Concept under test
Source tensor and quadratic electric-field rail for Kerr birefringence.
Observable / dataset
Material Kerr constants under declared wavelength, temperature, and polarizability access rails.
QTT target
Δ nlabQTT = λ KlabQTT E2, with KlabQTT = cos(π/8) AKQTT / FdriftK and no dependence on Kobs.
Result / sigma
Source tensor and quadratic field rail closed; material polarizability rail specified; no decisive no-retune material σ yet.
Book anchor
DOI record live 2026-06-05; book-page integration pending after v10.01.
Source links
Next check / falsifier
Run the proposed material/liquid ratio audit without fitting the observed Kerr constants.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-06-05 under concept DOI 10.5281/zenodo.20539673
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Predictions and CLEAR Testssource theorem, pending external stress
no σ yet

Color-Closure Confinement

The color-closure record is live in the corpus, but the Observatory keeps the observation label pending until external lattice or hadron-corridor tests are declared.

In standard language
In mainstream terms, this is a preregistered QTT target for Lattice/hadron tests of open-color exclusion and string-tension corridors.. It should not be read as an observed hit until the named external data class exists and the row-card comparator is opened.
Theory-side sensitivity
Theory-side sensitivity is a future row-card requirement: source expression, access/readout convention, covariance, and negative controls must be frozen before comparison.
QTT archived
2026-06-06 under concept DOI 10.5281/zenodo.20568652
Comparator released
Future declared lattice/hadron stress class.
Upstream rails
A6 gatecenter sheetsno-open-color
Sector
QCD / confinement source theorem
Concept under test
Finite color-boundary complex, no-open-color gate, and A6-blocked string tension.
Observable / dataset
Lattice/hadron tests of open-color exclusion and string-tension corridors.
QTT target
No open color as a finite boundary/access consequence, not as a hand-added confinement postulate.
Result / sigma
Live DOI source theorem; no Observatory σ assigned yet.
Book anchor
DOI record live 2026-06-06; book-page integration pending after v10.01.
Source links
Next check / falsifier
Declare the lattice/hadron comparison class before promoting to observed status.
Enumeration card
Legal space
Prediction protocol declared; finite alternative-space enumeration is not promoted on this card unless listed in the source DOI.
Gates
Comparator class, data-freeze rule, and falsifier are named before the row can turn green.
Survivors
Pending external data.
Timestamp
2026-06-06 under concept DOI 10.5281/zenodo.20568652
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Falsification and Errata

Falsification and Errata

Negative tests, failed routes, and guardrails kept visible as part of the corpus discipline. 2 Observatory records in this category. Each card states the concept under test, observed quantity, QTT target, result, book page anchor, and next falsifier or check.

Falsification and Erratanegative audit
failure record

H1 Out-of-Sample Lensing Failure

The H1 record is kept visible because a serious observation map must show failed tests as first-class records.

In standard language
This is a preserved failed out-of-sample lensing route. Its job is provenance and falsifiability, not rescue.
Theory-side sensitivity
Sensitivity is historical: the record documents what failed or was corrected, not a live fitted rescue.
QTT archived
2026-05-09 under concept DOI 10.5281/zenodo.20095338
Comparator released
Failure record published 2026-05-09.
Upstream rails
prediction firewallMACS J0025El Gordo
Sector
Lensing / negative audit
Concept under test
Falsifiability of the QTT cluster-lensing program.
Observable / dataset
MACS J0025 and El Gordo out-of-sample cluster-lensing tests.
QTT target
Prediction maps built before observed κ/γ residual verdicts.
Result / sigma
Failure confirmed and preserved as an audit record, not reworded into a theorem.
Book anchor
QTT Main Book v10.01, compact ledger p. 1253; public H1 DOI record carries the failure audit.
Source links
Next check / falsifier
Future cluster tests should preserve the same prediction-before-residual firewall.
Enumeration card
Legal space
Not a discovery enumeration; this is a preserved failed route or negative audit.
Gates
Failure/erratum status stays visible and cannot be upgraded by prose.
Survivors
No theorem survivor claimed.
Timestamp
2026-05-09 under concept DOI 10.5281/zenodo.20095338
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Falsification and Errataerratum / failed route
failed route

Equation 601 Failed-Route Audit

Equation 601 remains on the Observatory so the corpus does not hide its discarded paths.

In standard language
This is a failed equation route kept in the public ledger. It should be cited as an erratum/audit object only.
Theory-side sensitivity
Sensitivity is historical: the record documents what failed or was corrected, not a live fitted rescue.
QTT archived
2026-05-02 under concept DOI 10.5281/zenodo.19982606
Comparator released
Failed-route report published 2026-05-02.
Upstream rails
erratumfailed routeaudit discipline
Sector
Errata / failed route
Concept under test
Erratum discipline: a failed equation route is not a theorem.
Observable / dataset
Published error/failed report.
QTT target
Keep visibly listed as audit/erratum, not as a claimed result.
Result / sigma
Failed route retained in the compact corpus ledger.
Book anchor
QTT Main Book v10.01, compact ledger p. 1253.
Source links
Next check / falsifier
Any future text citing the route must cite it as failed/audit only.
Enumeration card
Legal space
Not a discovery enumeration; this is a preserved failed route or negative audit.
Gates
Failure/erratum status stays visible and cannot be upgraded by prose.
Survivors
No theorem survivor claimed.
Timestamp
2026-05-02 under concept DOI 10.5281/zenodo.19982606
Reproduce / audit note
Rebuild from the book pages and DOI record named on this card; keep source value, comparator, and access window as separate columns.
Crosswalk

Source Links

The Observatory is designed to sit beside the Corpus Tree, Blog Map, Lexicon, and Zenodo community.

Machine Ledger

Machine-readable JSON and CSV are regenerated in the repository with each publish. Public media upload is attempted during the publish pass when WordPress.com accepts the file type.

2026-09-03: Observation as Access v11.01 published under concept DOI 10.5281/zenodo.20114403. The Observatory now adds a byte-verified chronology and claim-allocation certificate, explicit QTT/standard/Cho-Lee scope separation, a design-label leakage no-go, and a branch-resolved 331/331 count-to-decision qualification interface while leaving the sealed same-effect target unchanged.
2026-09-02: Observation as Access v11.0 published under concept DOI 10.5281/zenodo.20114403. The Observatory records the QTT Thermodynamic Access-Intertwining Theorem, lawful central-effect constructor, exact information identity, work ceiling, scalar-inversion no-go, exact sharp-projector recovery, 8,407/8,407 retrospective audit, and the separate execution-pending same-effect commutator test.
2026-09-01: Same-Central-Effect Work-Quadrature Loop Preregistration published under concept DOI 10.5281/zenodo.22236546. The Observatory now records the exact five-by-four QTT loop surface, ordinary-QM unity comparator, independent work qualification, same-route certificate, target-blind covariance order, three adversarial audits, 135/135 release checks, and execution-pending status without treating component demonstrations as an observation.
2026-08-25: Chiral spin framework v1.3 and the sealed CISS Log-Gram molecular-length/defect test were published under concept DOIs 10.5281/zenodo.22084700 and 10.5281/zenodo.22092628. The exact amplitude functional, common-gain invariance, serial rapidity, signed-defect law, raw-current covariance coordinate, fixed-coefficient conjecture, eligibility firewall, and all registered outcomes are now public before prospective data.
2026-08-24: Chiral spin framework v1.2 published under concept DOI 10.5281/zenodo.22084700. The finite source-graph and normalized energy-shape theorems now sit beside a chirality-odd sector-activation theorem and a crystal-fixed Dx reflection theorem. The Observatory prints 25.17 and 14.38 quoted-uncertainty separations as high-separation rejection of the zero-odd branch under the printed-error convention, keeps them out of the formal σ histogram without full covariance, and preserves covariance-complete Dx and randomized four-cell experiments as prospective discriminators.
2026-08-06: Absolute-clock two-test v3.1 and Physical Terminal v1.1 published under their stable concept DOIs. P16 ordinary-null completeness now requires every applicable rotating-platform centre-of-mass, internal-spin, field, rotational Rontgen, polarization, backscatter, trap, Zeeman, and Stark row to be included, bounded, or shown inapplicable before target labels. The sealed A1 target, ratio orientation, compatibility bands, power thresholds, historical hashes, and classifier remain unchanged.
2026-08-01: A1 Physical-Terminal Constructor Gate added under concept DOI 10.5281/zenodo.21739215. The Observatory now places a carrier-independent activation theorem upstream of every platform-specific reference-switch test. Completed-event memory, write ancestry, source/laboratory continuity, overwrite, readout-degree, camera, chronology, and no-programming failures return INELIGIBLE: NO THEORY VERDICT rather than a false A1 falsification.
2026-07-29: Absolute-clock preregistration v3.0 merged two independently judged instruments under concept DOI 10.5281/zenodo.21376520: Test 1 matter-wave Sagnac and Test 2 same-sample full-Stokes Faraday. The Observatory now records the shared fixed-target estimator, instrument-specific camera and overlap certificates, 18-dimensional covariance, CHSH-angle contamination no-go, complete-block rule, three adversarial audits, and execution-pending status without treating synthetic power as evidence.
2026-07-25: Folman v5.0 and dual-clock Sagnac v2.0 published under their existing concept DOIs. The test is now an operator-complete four-history Gram construction. Calibration erasure and programmed ordinary overlap are explicit no-go branches; an independently frozen ordinary-overlap certificate is mandatory before any GR-versus-QTT verdict.
2026-07-21: Folman reference-switch test refreshed under concept DOI 10.5281/zenodo.20123495. The Observatory now prints the corrected Rref=ST/Sτ orientation, the two physically distinct reference histories, all eight eligibility gates, the public SHA-256 lock, and the execution-pending status without promoting existing Folman hardware results into a cos(π/8) observation.
2026-07-17: Dual-clock Sagnac preregistration updated by a transparent pre-data amendment under concept DOI 10.5281/zenodo.21376520. The v1.0 targets and analysis hash remain sealed; the live-run gate is now σRplan≤0.0015 with at least 80% Fieller classification power under both frozen hypotheses, certified by 95% Wilson lower bounds.
2026-07-15: Dual-clock Sagnac reference-switch test added as a sealed, channel-qualified preregistration under concept DOI 10.5281/zenodo.21376520. The Observatory separates its 15.224-σ sensitivity forecast at σR=0.005 from any future observed pull.
2026-06-23: A7 black-hole information-loss denial refreshed under concept DOI 10.5281/zenodo.20346916; the Observatory now prints Bekenstein entropy without Hawking, rejects Hawking radiation as a source constructor, keeps effective temperature as an access readout, and marks optional thermal flux/species S-matrix rows as future access-population tests.
2026-06-20: Artian time framework refreshed under concept DOI 10.5281/zenodo.20761499; the Observatory row now includes Quantized Now, Time Tilt plus Creation Drift, A2 proper-time, high-regime finite boosts, retarded address support, and the no-σ structural status.
2026-06-20: Blind A2 tabletop gravity tests added as a pending Observatory protocol; AB holonomy added as a structural source-access anchor; Newton G refreshed into the six-face Artian ledger.
2026-06-19: Quark/CKM refreshed under concept DOI 10.5281/zenodo.20722978; finite CKM source-word enumeration, finite face uniqueness, and precision micro-provenance packet are now closed, while the global CKM covariance packet, quark-mass source-word compiler, and baryon/proton unlock remain pending.
2026-06-18: A6 Hadamard refreshed under concept DOI 10.5281/zenodo.20744161; compact-color kernel uniqueness added upstream of βZ micro-provenance, compact SUJ(3) Haar-root readout, static string-tension audit, downstream HVP/vector/chiral/glueball predictions, and boundary half-share grammar.
2026-06-09: Observatory rebuilt from feedback; dependency rails, pull distribution, structural anchors, timestamp fields, and skeptic route added.
2026-06: N1 comparator history made explicit: NuFIT 6.0 +0.16 σ → NuFIT 6.1 IC24 +0.75 σ.
2026-06: Born Rule and Newton G moved out of the numeric-pull class into Structural Anchors.
2026-06: Local file paths removed from visitor-facing source anchors; public DOI/book anchors retained.
Live maintenance rule
Whenever the main book, Corpus Tree/DOI Map, Blog Map, Zenodo community, or any blog carrying a test claim is updated, this Observatory and its machine ledger should be updated in the same release pass. Rows must keep the weakest honest status label: observed, internal audit, prediction, candidate, or failed route. A sigma value is shown only when the book or a named workpack prints the comparison; otherwise the row says no sigma yet.