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Conjecture Alignment UUM8D

rg78803 edited this page Aug 27, 2026 · 4 revisions

Conjecture Alignment with UUM-8D — architectural map

Status: PUBLIC — 2026-08-27
Program: The lattice holds · Shear Studies · Zero Float · Zero Shear · Peer-review bundle · Math Court · Quantum inventory

Three pillars of continuous mathematics — volume, probability, rigidity — were taken off Einstein’s continuum and graded on the Eisenstein whole-integer lattice. The continuum missed. The lattice held. That is the assumption that broke. Impact, stated at its true size.

Live MCP: https://affine.earth/language-invariant/mcp · Registry: earth.affine/math-court
Caller: bash clients/math-court-mcp/prove-live-court.sh
Law: LatticeRender/Sources/LatticeRender/QCCourtLaw.swift + QMACourtLaw.swift

Live tools/list 2026-08-27 is still 23 (HTTP 200, edge nbg-01). QC-001…019 are wired in git (20 named presented-config verifiers). Glama sees them after the cell binary rolls. After deploy, count is 43. Local proof: swift test --package-path LatticeRender --filter QCCourtLaw.


Court-exposed algorithms (how researchers call them)

Presented-config verifiers. Unknown grounds are not searched. Decimal strings only. VQE the optimizer and QAOA the pulse schedule are not tools — the court grades the presented energy.

QC Algorithm MCP tool math_court domain Fixture Local Lean / prover
11 Ehrhart math_court geometry polytope_id=unit_square dilation=12 gaiaftcl prove conjecture-workload
12 Parallel repetition math_court chance rounds=8 same
13 Connes rigidity math_court algebra word=Z2_a2b same
22 2-local / VQE problem execute_2local_hamiltonian · verify_vqe_energy qma_2local · qc_vqe constraints=0,1,1,1 config=0,1−1/1 QMACourtLaw
23 Spin-glass / QAOA problem route_spin_glass_manifold · verify_qaoa_energy qma_spinglass · qc_qaoa triangle spins → −1 same
24 N-representability verify_n_representability qma_nrep rho2=1/2,0/1|0/1,1/2 n=2 same
25 Permanent execute_exact_permanent qma_permanent all-ones 3×3 → 6 same
QC-001 Shor witness verify_shor_witness qc_shor N=15 halfPow=4 factor=3 cofactor=5 ShorFactor15.lean · ShorWitnessCertifier.lean
QC-001 Period verify_period qc_period a=7 N=15 r=4 proper_divisors=1,2 same
QC-002 Grover verify_grover qc_grover oracle=0001 marked=3 GroverN4.lean
QC-003 QFT phases verify_qft_phases qc_qft n=4 k=1 phases=0/4,1/4,2/4,3/4 QFTN4.lean
QC-004 QPE verify_qpe_phase qc_qpe m=2 k=1 phase=1/4 QPEN4.lean
QC-005 HHL verify_hhl qc_hhl I₂ x = b HHL2.lean
QC-006 Deutsch–Jozsa verify_deutsch_jozsa qc_dj table=00 class=constant DeutschJozsa2.lean
QC-007 Bernstein–Vazirani verify_bernstein_vazirani qc_bv hidden=101 BernsteinVazirani4.lean
QC-008 Simon verify_simon qc_simon mask=11 x=00 y=11 Simon8.lean
QC-009 Amp. amp. verify_amplitude_amplification qc_ampamp oracle=0001 iterations=1 AmpAmpN4.lean
QC-010 Amp. est. verify_amplitude_estimation qc_ampest N=4 M=1 fraction=1/4 AmplitudeEstimationMarked.lean
QC-011 Kickback verify_phase_kickback qc_kickback m=1 k=1 phase=1/2 QSVT2.lean
QC-012 Walk C2 verify_quantum_walk qc_walk steps=2 start=0 end=0 CTQW2.lean
QC-015 Counting verify_quantum_counting qc_count oracle=0001 count=1 BosonSampling2.lean
QC-016 Teleport verify_teleport qc_teleport alice=01 corrections=00 bob=01 catalog
QC-017 Superdense verify_superdense qc_superdense bits=11 decoded=11 catalog
QC-018 Bell verify_bell_measurement qc_bell ab=00 class=00 catalog
QC-019 Topological word verify_topological_word qc_topo word=Z2_a2b q=0 r=1 Study 13
bash clients/math-court-mcp/prove-live-court.sh
swift test --package-path LatticeRender --filter QCCourtLaw

Summary

Conjecture UUM-8D fit Study Status
Ehrhart Volume Native — integer lattice points in scaled polytopes Study 11 LAW FROZEN — 5/5 WIN
Quantum Parallel Repetition High — discrete vQbit transitions replace float amplitudes Study 12 LAW FROZEN — 4/4 WIN
Connes Rigidity High — group words → Eisenstein linking ((q,r)) Study 13 LAW FROZEN — 5/5 WIN
Riemann Hypothesis Low — continuous complex plane + float zeta REFUSED — architectural mismatch

1. Ehrhart Volume Conjecture — NATIVE (WIN SEALED)

What the WIN means: volume is the leading coefficient of an integer count polynomial. Float triangulation at (t=12) misses every corpus member.

Proof: Study 11 Results


2. Quantum Parallel Repetition — HIGH (WIN SEALED)

What the WIN means: the classical CHSH ceiling (3/4) multiplies as ((3/4)^n). A discrete Jordan swap carries that fraction. A float proxy (751/1000) never equals it.

Proof: Study 12 Results


3. Connes Rigidity Conjecture — HIGH (WIN SEALED)

What the WIN means: group words that are the same element after relators share an Eisenstein linking coordinate. Continuous spectral radius is offset by one on every row.

Proof: Study 13 Results


4. Riemann Hypothesis — REFUSED

Standard (\zeta(s)) on (\mathbb{C}) requires the continuous plane and floating-point evaluation. That violates the integer-only seal path. No Study is opened on (\zeta(s)).


Peer review

Sanitized geometries, schemas, scrubbed stream archives, and the SHA256d lock live at Peer-Review Conjecture Bundle. Execution-cell source, KVM routing, and SIMD kernels are not in that tree.

⚡ Paradigm

✅ Sealed — live court PROVEN

🔴 Live claims — standing, not sealed

☀️🌑 Eclipse 2026 — Study 01 DATA SEALED

🌊 Chartered — corpus pending

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