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docs(geometric-substance): canonical reconciliation + gravity-consistency gate
Single reconciled vocabulary and conceptual frame, superseding scattered revisions; super-Cartan demoted to a gated extension module (off by default). - GEOMETRIC_SUBSTANCE_CANONICAL.md: C^8/J Cartan substance, observer/observerless (typed projection Pi), Sidon inexact-mirror, vocabulary lock (by mechanism), mechanism->port-role map, Dolbeault-Laplacian resolution, evidence tiers. - Gravity-consistency gate (sec 7): R_ij != 0 AND identified curvature class; shown to coincide with the differential "something rather than nothing" test. Initial recovery (provisional, RESIDUAL_TESTED): achiral -> teleparallel (curvature ~0), chiral -> Einstein-Cartan, Sidon separates from random at ~4sigma. Seven stress-tests listed before promotion. - gate_residual_recovery.py: the computation (prototype residual, not the Lean codec). - ARCHIVE_SUPERSEDED.md + archive_superseded.sh: read-only archival index and a non-destructive (git mv + banner) move script for superseded vocabulary docs.
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# ARCHIVE — Superseded Documentation (READ ONLY)
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> **READ-ONLY / HISTORICAL.** Everything indexed here is superseded by
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> `GEOMETRIC_SUBSTANCE_CANONICAL.md` (2026-06). It is retained only for
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> traceability — to show where a term or framing came from across earlier
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> conceptual revisions. **Do not use anything below as current doctrine.**
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The canonical document reconciled the forked vocabulary by mechanism. The
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definitions recorded here are the *prior, conflicting* versions it replaced.
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---
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## A. Quarantined now — canonical owns their entire purpose
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These docs exist solely to define vocabulary / name concepts that the canonical
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document now defines better. They are moved to
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`6-Documentation/docs/_superseded/2026-06/` by `archive_superseded.sh`,
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each with a read-only banner prepended.
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| Archived doc | What it asserted (now superseded) | Replaced by |
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|---|---|---|
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| `6-Documentation/docs/VOCABULARY_LOCK.md` | DIAT = "Dynamic Integer-Address Transform"; NUVMAP = "Non-Uniform Variable Mapping (2D spectral projection)" → `Semantics.NUVMATH`; PIST = "Perfectly Imperfect Square Theory" | Canonical §4 (the new lock), §1 |
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| `0-Core-Formalism/otom/docs/nuvmap/NUVMAP_NAMING_AND_DEFINITION.md` | NUVMAP = "Non-Uniform Virtual Memory Address Projection" | Canonical §4 (NUVMAP + PhiNUVMAP entries) |
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**Why these and not the Lean files:** the implementation (`.lean`) is the source
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of truth and stays put. Only the *naming/lock* docs — whose grasp the canonical
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reconciliation has fully absorbed — are quarantined.
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---
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## B. Review candidates — mixed content, your call
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Each of these carries some superseded vocabulary **plus** content that may still
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be live (engineering guidance, other notation, dated records). Archiving the
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whole file would bury the still-good parts, so they are *not* auto-quarantined.
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Recommendation per doc below; enable any of them in `archive_superseded.sh` once
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confirmed, or update the stale rows in place instead.
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| Candidate doc | Stale element | Recommendation |
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|---|---|---|
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| `0-Core-Formalism/otom/docs/wiki/NotationNomenclatureRegistry.md` | DIAT = "Dual-Interval Algebraic Transform"; NUVMAP = "spectral pixel/state container" | Broad registry — **update the two rows in place**, point them at canonical §4; do not archive wholesale |
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| `6-Documentation/docs/WEIRD_CONCEPTS_GLOSSARY.md` | Defines the "weird concepts" the canonical doc reconciled and tiered | Likely superseded for the reconciled terms — **read and confirm**, then archive or update |
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| `6-Documentation/docs/GLOSSARY.md`, `6-Documentation/wiki/Glossary.md`, `obsidian-vault/00-MAP/Glossary.md` | Carry old DIAT/NUVMAP/PIST entries | Glossaries with many entries — **update the affected entries**, don't archive |
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| `0-Core-Formalism/otom/docs/nuvmap/NUVMAP_DESIGN_REFLECTIONS.md` | Uses superseded NUVMAP naming | Naming is stale but the *design reasoning* may be live — **read before deciding** |
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| `0-Core-Formalism/otom/docs/nuvmap/NUVMAP_ENCODING_DOS_AND_DONTS.md` | Uses superseded NUVMAP naming | Engineering dos/don'ts may still hold — **keep unless content is obsolete** |
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| `6-Documentation/docs/semantics/BHOCS.md`, `6-Documentation/docs/semantics/AMMR_NODE_REDEFINITION.md`, `6-Documentation/docs/semantics/RG_FLOW_DEFINITION.md` | Reference reconciled terms | Unread here — **triage individually** |
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| `6-Documentation/docs/reports/adaptive_analysis_2026-05-11.md` and other dated reports | Use old vocabulary | **Leave as-is** — dated reports are point-in-time records, already historical by nature |
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| `6-Documentation/wiki/Concept-Archive.md` | — | **Leave** — already an archive |
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---
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## C. Method
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- **Non-destructive.** `archive_superseded.sh` uses `git mv` + a prepended banner;
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nothing is deleted, history is preserved, and the content stays readable.
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- **Conservative.** Only docs whose entire purpose the canonical doc absorbs are
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quarantined automatically. Mixed-content docs are listed, not buried, because a
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doc that is 80% live should not be flagged dead over a stale definition.
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- **Reversible.** `git mv` back, or strip the banner, restores any file.
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> **Gitignore note.** This repo's `.gitignore` line 120 (`**/archive/`) ignores
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> *every* `archive/` directory (those are offloaded to Gdrive, line 114). So the
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> archive deliberately uses `_superseded/`, **not** `archive/`, to stay tracked in
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> git as readable read-only history. If you would rather these be offloaded like
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> other archives, point `DEST` at an `archive/` path — the script will warn that
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> the files become untracked.
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To run (from the repo root):
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```bash
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bash archive_superseded.sh
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git status # review the moves
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git commit -m "Archive vocabulary docs superseded by GEOMETRIC_SUBSTANCE_CANONICAL"
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```
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# Geometric Substance — Canonical Reconciliation
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**Status:** Canonical. This document supersedes the scattered and conflicting
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usage spread across `VOCABULARY_LOCK.md`, `NotationNomenclatureRegistry.md`, the
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`otom/docs/*` conceptual notes, and the individual Lean docstrings. Where a term
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has carried multiple expansions across conceptual revisions, the entry here is
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defined **by mechanism**, not by label, and the superseded labels are recorded
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so older documents remain traceable.
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**Reading rule (project-wide):** labels in the legacy stack are unreliable —
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they were assigned across many revisions and by an automated labelling pass.
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Trust the mechanism (the Lean definition, the proven theorem, the formula), not
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the name. Every claim below is tagged with an evidence tier in §7.
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---
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## 1. The geometric substance
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The object the system manipulates is a single **covariant geometric datum** on a
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fixed model space, viewed through many projections. The model space is
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```
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ℂ⁸ ≅ ℝ¹⁶ with complex structure J (a U(8) / Kähler G-structure)
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```
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This is not an interpretation imposed from outside — it is what the code builds.
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`Law15_Field.goldenSpiral16` acts block-diagonally on **8 complex planes**, each
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block `[[a,−b],[b,a]]` with `λ = a + ib = φ⁻¹·e^{iθ_g}`, and it is admitted only
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because complex-scalar multiplication commutes with `J` ("passes the conformal
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Kähler gate"). The negative controls confirm the intent: `shear16` is rejected
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(non-orthogonal) and complex conjugation is rejected because `CᵀJC = −J`
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(anti-holomorphic).
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The geometry is **Cartan geometry**, not Riemannian. The dictionary:
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| Cartan role | Realization in the stack |
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|---|---|
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| connection | polarity accumulator `B` along braid strands |
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| curvature / torsion | braid residual `R_ij = B_ij − (B_i + B_j)` (`BraidDiatCodec` Layer 3) |
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| development onto the model | golden contraction `s' = c + φ⁻¹·(s − c)`, with `‖Sᵗs − c‖ = φ⁻ᵗ‖s − c‖` (`PistSimulation` §8) |
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| G-structure admissibility | the conformal Kähler gate — preserve `J` (`Law15_Field`); this is the FAMM filter |
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The geometry carries **intrinsic torsion**: the super left-invariant forms are
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not closed, so `R_ij ≠ 0` is torsion rather than an optional add-on. This is the
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load-bearing reason the model is Cartan (torsionful) and not Levi-Civita
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(torsion-free). The torsion residual is a five-channel bracket
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`(lower, upper, gap, κ, φ)`, carrying an explicit curvature channel `κ` and a
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phase channel `φ`.
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**The super extension is a gated module — off by default.** The odd / graded
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directions come from the chirality flag (`left / right / achiral`,
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`BraidDiatCodec` Layer 1) and the eigensolid's `(2k−1, 2k)` coordinate pairing
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(BioSight G3), which is a ℤ/2 grading. Whether the grading is genuinely *super* —
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Grassmann-anticommuting, picking up the `(−1)^{deg·deg}` sign — is a **design
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decision**, not a fact already in the code. The program proceeds from the proven
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bosonic Kähler base; **super-Cartan is an extension module that stays off until
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its gate passes** (§7). This is the promotion-ladder discipline applied to the
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geometry itself: the core (DIAT bijection, `φ`-contraction, the encoder, the
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differential test) depends on none of the super structure, so it advances
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regardless of how the gate resolves.
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---
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## 2. The observer / observerless duality
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The stack is the **Observerless Research Stack**: truth lives in
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receipt-bearing, invariant-preserving events, not in any privileged frame.
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`Law17_Observer` makes this exact — the observer is **a typed projection, not an
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agent**:
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> "The observer is not a separate agent but a typed projection: `Π₁₆→₃` applied
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> to the object. The measurement residual tracks what was lost in projection."
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So:
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- **Observer** = a choice of projection `Π` (an `ObserverGate`, or an orientation
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in `SO(n)` per `ObserverAngle`). It produces one **locality-specific shape**:
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the projected silhouette of the object (cube-along-the-diagonal → hexagon).
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- **Collapse residual** `ε_collapse = ‖M_before − M_after‖` — the mass `Π`
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discards. Aligned angles minimize it; the aligned angle reveals the object's
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minimal intrinsic dimension.
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- **Observerless** = the covariant object that is true across *all* `Π` — the
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frame-free invariant, i.e. the equivalence class under the structure group.
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The "observerless-observer symbol" is `Π` itself stripped of any subject: an
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observation with no one behind it.
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"Covariant geometries in locality-specific shapes" is exactly this: one
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invariant object, the structure group acting on it, many projected shapes.
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---
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## 3. The Sidon mirror (the inexact reflection)
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For a Sidon set `S`, the mirror-translation `c − S` is again Sidon and — the key
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fact — has the **same difference set**:
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```
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D(c − S) = { (c − s_j) − (c − s_i) } = { s_i − s_j } = −D(S) = D(S)
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```
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because the difference set is reflection-symmetric. Therefore:
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- At the **observerless** level (autocorrelation / difference structure / Fisher
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invariant), `S` and its mirror are **exactly identical**.
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- At the **observed** level (any projected shape), they differ — and the
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difference is exactly the collapse residual `ε_collapse(θ)`, which vanishes
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only when the observer-angle `θ` aligns with the reflection axis.
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This is the precise content of "a mirror translation, a not exact one": exact in
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the covariant object, inexact in every projection, mediated by `Π`. The
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**chirality flag** (`left / right / achiral`) is the discrete ledger of it —
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`achiral` marks the angle where the mirror is exact, `left/right` mark the
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inexact pair seen off-axis. Chirality is not merely an address bit: the GWL
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coupling `w_ij = cos(Δθ)·cos(Δφ)·(1 − 2|Δχ|)·exp(−|Δp|²/2σ²)` carries the
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chirality difference `|Δχ|` as a first-class coupling term.
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In the Cartan frame this is the standard fact, not a special case: a symmetry of
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the model `G/H` need not be a symmetry of a given realization — it holds only up
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to the structure group, exact covariantly and inexact in a fixed frame, with the
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residual measuring frame misalignment.
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**The golden angle.** `ObserverAngle` says the *aligned* angle reveals minimal
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dimension and exact symmetry. The golden angle `θ_g` from PhiNUVMAP is the
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*maximally mis-aligned* orientation — the most-irrational angle, aligning with no
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rational symmetry axis. It is the least-privileged viewpoint, the angle that
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refuses to pick a frame: the closest realization of an *observerless* observer as
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an actual angle. This is why the golden contraction is the natural generic probe.
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**Incoherence as the shared resource.** The same principle appears in three
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categories, and is the spine of the whole program:
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| category | instance | the resource |
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|---|---|---|
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| additive | Sidon set (distinct pairwise sums) | flat autocorrelation |
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| geometric | high-dimensional sphere (near-orthogonality, Ma–Shen–Xie 2025) | clique suppression |
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| dynamical | golden angle (Weyl equidistribution) | resonance / collision avoidance |
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The golden ratio appears *because* `θ_g` is provably the maximal-incoherence
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rotation (continued-fraction theory), not by analogy.
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---
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## 4. Vocabulary lock
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Defined by mechanism. "Superseded labels" are recorded only for traceability to
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older revisions; do not use them.
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| Term | Canonical role (mechanism) | Locus | Superseded labels |
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|---|---|---|---|
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| **DIAT** | Integer address by perfect-square shell: `k = ⌊√n⌋`, `a = n − k²`, `b = (k+1)² − n`. **Provably bijective** (`encode_decode_roundtrip`). | `BraidDiatCodec.lean` | "Dynamic Integer-Address Transform", "Dual-Interval Algebraic Transform" |
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| **PIST** | The imperfect-square witness / audit surface; conserves `mass = t·(2k+1−t)` under lawful transitions. | `PIST/*`, `ARCHITECTURE.md` | "Perfectly Imperfect Square Theory" (keep as flavor; the *role* is the witness surface) |
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| **NUVMAP** | Non-uniform projection onto a spectral / address coordinate surface (more resolution on important regions). Not a proof engine. | `NUVMAP_NAMING_AND_DEFINITION.md` | "Virtual Memory Address Projection", "Variable Mapping", "spectral container" |
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| **PhiNUVMAP** | NUVMAP lifted to `ℂ⁸` (16D) golden-ratio fractal coordinates with `J`; development = `φ`-contraction. | `PistSimulation.lean` §8, `Law15_Field.lean` | — |
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| **eigensolid** | The pairwise-averaging fixed-point map `C(p)_{2k−1} = C(p)_{2k} = (p_{2k−1}+p_{2k})/2`; convergence is a compressor requirement. **Distinct from NUVMAP** — it is the merge *on* the surface, not the surface. | BioSight G3, `BraidTreeDIATPIST.lean` | (often conflated with "NUVMAP merge") |
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| **braid residual** | `R_ij = B_ij − (B_i + B_j)` — discrete curvature/torsion, 5-channel `(lower, upper, gap, κ, φ)`. | `BraidDiatCodec.lean` Layer 3 | — |
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| **TreeDIAT** | Tree-embedding score for routing/pruning **plus** a homeomorphic-embedding *certificate* (Kruskal WQO). Score routes; only the embedding proof certifies. | `TreeDIATKruskal.lean` | — |
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| **chirality** | Mirror-handedness ledger (`left / right / achiral`); first-class coupling term `(1 − 2|Δχ|)`. | `BraidDiatCodec.lean` Layer 1, GWL | — |
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| **observer / Π** | A typed projection (no agent); `ε_collapse = ‖M_before − M_after‖` is the projection loss. | `Law17_Observer.lean` | — |
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| **observerless** | The covariant object true across all `Π` — the frame-free invariant. | stack-wide (`ARCHITECTURE.md`) | — |
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| **FAMM** | Admissibility filter = G-structure preservation (the Kähler `J` gate). | `2-Search-Space/FAMM`, `Law15_Field.lean` | "Frustration Aligned Memory Management" |
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---
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## 5. Mechanism → port role
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For folding the legacy mechanisms into BioSight / SilverSight (the port spec):
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1. **`R_ij` braid residual → curvature/torsion operator.** Replaces BioSight's
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degree-±1 proxy and SilverSight's hardcoded `nuvmap_spectral_driver.py`
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diagonal; computed from the real graph, carrying the 5-channel bracket.
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2. **`phiContract` + `goldenSpiral16` → development + admissibility.** Replaces
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BioSight's ad-hoc G1 contraction `λ = 1/√(1+B)` with the `φ⁻¹` golden
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contraction (proven `φ⁻ᵗ` law); FAMM admissibility = the Kähler gate.
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3. **`TreeEmbeds` + certificate → separation metric with rigor gate.** Parse-tree
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(τ-block) separation; scalar score routes, the embedding proof certifies. No
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claim is promoted without an embedding witness.
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4. **DIAT `encode_decode_roundtrip` → invertibility receipt.** The proven
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bijection *is* the `receipt_invertible` requirement, made formal.
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---
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## 6. The Laplacian resolution
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Long-standing open question: does spectral binning eigendecompose the plain graph
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Laplacian or the sheaf Laplacian? With the model space fixed as Kähler (`ℂ⁸`,
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`J`), neither: the natural operator is the **`J`-compatible complex / Dolbeault
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Laplacian**, the one that respects the structure the development map preserves.
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The geometry selects the operator.
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---
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## 7. Super-Cartan as a gated extension — the gravity-consistency gate
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Super-Cartan (§1) is off by default. It activates only when the
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**gravity-consistency gate** passes:
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> **Gate.** `R_ij ≠ 0` (residual present) **and** the curvature class of the
|
||||||
|
> connection is identified (teleparallel if the curvature part is flat,
|
||||||
|
> Einstein-Cartan if not).
|
||||||
|
|
||||||
|
**Why the gate exists — dissolving "the model says gravity doesn't exist."**
|
||||||
|
That worry holds in exactly one case: the geometry collapsing to its flat model
|
||||||
|
with `R_ij ≡ 0`. It does **not** follow from "zero curvature," because the
|
||||||
|
geometry is torsionful. Teleparallel gravity (TEGR / Weitzenböck) is empirically
|
||||||
|
GR-equivalent with curvature *identically zero* and gravity carried entirely by
|
||||||
|
torsion. So `R_ij ≠ 0` means the geometry **gravitates** — teleparallel if the
|
||||||
|
curvature part is flat, Einstein-Cartan otherwise. Gravity-denying is the single
|
||||||
|
flat-and-torsionless point, nothing more.
|
||||||
|
|
||||||
|
**The gate is the differential test.** Gravity-denying = flat-and-torsionless =
|
||||||
|
zero residual = no separation from a flat random baseline = *nothing*. The number
|
||||||
|
that shows the encoding beats random is therefore the same number that shows the
|
||||||
|
geometry is not flat-trivial — one obligation, read two ways. Its formal home is
|
||||||
|
`BaselineComparison.lean`, whose verdict should read "agrees-with
|
||||||
|
teleparallel-or-Einstein-Cartan," not "disagrees."
|
||||||
|
|
||||||
|
### Initial recovery (provisional — to be stress-tested)
|
||||||
|
|
||||||
|
Computed by `gate_residual_recovery.py` on a **prototype** residual
|
||||||
|
`R_ij = B_ij − (B_i + B_j)` with `B_i = cos θ_i` and
|
||||||
|
`B_ij = cos(θ_i+θ_j) + ε·χ_ij·sin(θ_i−θ_j)`, on a Mian-Chowla Sidon set
|
||||||
|
(`n = 16`, max `252`, phase modulus `N = 505` chosen so pairwise sums never
|
||||||
|
wrap). This is the residual *mechanism*, not the Lean `BraidField` codec — the
|
||||||
|
magnitudes are model-dependent; the separation is not.
|
||||||
|
|
||||||
|
```
|
||||||
|
curvature / torsion split
|
||||||
|
achiral (ε=0): ‖R‖ = 18.05 torsion(sym) = 18.05 curvature(asym) = 5e-16 → TELEPARALLEL
|
||||||
|
chiral (ε=0.5): ‖R‖ = 18.80 torsion(sym) = 18.05 curvature(asym) = 5.27 → EINSTEIN-CARTAN
|
||||||
|
(gravity-denying needs ‖R‖ = 0; here ‖R‖ = 18.05)
|
||||||
|
|
||||||
|
Sidon separation vs 5000 random 16-subsets of [1,252]
|
||||||
|
structured pairwise-sum collisions : 0
|
||||||
|
random mean ± std : 13.65 ± 3.38
|
||||||
|
z-score : −4.04 (structured sits ~4σ below random)
|
||||||
|
random subsets that are Sidon : 0.00%
|
||||||
|
```
|
||||||
|
|
||||||
|
**Reading the numbers honestly.**
|
||||||
|
- The **~4σ separation** (z = −4.04; 0% of random subsets clean) is the
|
||||||
|
load-bearing, genuinely empirical result: the structured input is strongly
|
||||||
|
separated from random on the defining Sidon property. This is the "something
|
||||||
|
rather than nothing."
|
||||||
|
- The **achiral curvature ≈ 0** is a *structural* identity, not an emergent
|
||||||
|
surprise — a symmetric joint gives a symmetric residual whose antisymmetric
|
||||||
|
(curvature) part is exactly zero. What it demonstrates is that the
|
||||||
|
curvature/torsion split is real and **chirality-controlled**: chirality is
|
||||||
|
precisely what turns teleparallel (achiral) into Einstein-Cartan (chiral),
|
||||||
|
consistent with the chirality ledger of §3.
|
||||||
|
- The **torsion magnitude** (18.05) only certifies `‖R‖ ≠ 0` (not flat-trivial);
|
||||||
|
its value is an artifact of the cos prototype.
|
||||||
|
|
||||||
|
**Verdict (provisional).** `‖R‖ ≠ 0`, the curvature class is identified
|
||||||
|
(teleparallel achiral / Einstein-Cartan chiral), and the structure separates from
|
||||||
|
random at ~4σ. So the model **affirms gravity** in a named, GR-equivalent
|
||||||
|
formulation; it does not point to gravity not existing. The gate opens —
|
||||||
|
*provisionally*, resting on the §8 "sound reading" that `R_ij` is specifically
|
||||||
|
teleparallel torsion and that gravity-denying is the "nothing" case. Neither is
|
||||||
|
proven; this is an initial recovery at the `RESIDUAL_TESTED` rung.
|
||||||
|
|
||||||
|
**Stress-tests before promotion.**
|
||||||
|
1. Replace the cos prototype with the real `BraidField.braidCross` residual.
|
||||||
|
2. Scale `n`; confirm the separation holds or strengthens.
|
||||||
|
3. Use the Hachimoji `ℤ/360` modulus (needs a mod-360 Sidon / Singer difference
|
||||||
|
set; wrap-collisions change the residual).
|
||||||
|
4. `Q16.16` fixed-point fidelity — does the split survive the real arithmetic.
|
||||||
|
5. Harder null: the geometric `S⁷` / sphere baseline (Ma–Shen–Xie), not just
|
||||||
|
random distinct subsets.
|
||||||
|
6. Chirality source: derive `χ_ij` from the real braid word / the GWL `|Δχ|`
|
||||||
|
term, rather than the fixed all-left pattern used here.
|
||||||
|
7. Encode the verdict in `BaselineComparison.lean`.
|
||||||
|
|
||||||
|
---
|
||||||
|
|
||||||
|
## 8. Evidence tiers
|
||||||
|
|
||||||
|
Using the stack's own promotion ladder
|
||||||
|
(`RAW_IDEA → SANITIZED_METAPHOR → TOY_MODEL → TYPED_MODEL → RESIDUAL_TESTED →
|
||||||
|
COST_ACCOUNTED → PROOF_CANDIDATE → CORE_MODULE`):
|
||||||
|
|
||||||
|
**Proven (Lean theorems — `PROOF_CANDIDATE` / `CORE_MODULE`).**
|
||||||
|
DIAT `encode_decode_roundtrip` bijection; PhiNUVMAP `φ`-contraction law;
|
||||||
|
`TreeEmbeds` node/leaf monotonicity; `Law17` collapse-residual; `Q0_2` codec
|
||||||
|
round-trip lemmas (`native_decide`). These are not in question.
|
||||||
|
|
||||||
|
**Sound reading (`TYPED_MODEL` — mathematically defensible synthesis, not yet
|
||||||
|
proven in-repo).** The Cartan dictionary of §1; the Sidon-mirror result of §3
|
||||||
|
(the difference-set identity is a theorem; the observerless-exact /
|
||||||
|
observer-inexact framing is the reading of it); the golden-angle =
|
||||||
|
least-privileged-frame identification; the Dolbeault-Laplacian resolution of §6;
|
||||||
|
**the gate readings of §7** — that `R_ij` is specifically *teleparallel* torsion,
|
||||||
|
and that gravity-denying is the flat-and-torsionless "nothing" case.
|
||||||
|
|
||||||
|
**Stack-flagged speculative (`TOY_MODEL` / `RAW_IDEA` — the stack's own bars).**
|
||||||
|
`ObserverAngle` compression (`Toybox`, "not for production until 6.5σ",
|
||||||
|
`speculative-materials/ObserverAngleCompression.md`); higher super-Cartan
|
||||||
|
cohomology (cocycles / definite forms / brane molecule — nLab itself says
|
||||||
|
general super-Cartan "remains to be explored"); the super/odd anticommutation
|
||||||
|
decision of §1. The differential "something rather than nothing" number now has an
|
||||||
|
**initial recovery** (§7, `RESIDUAL_TESTED`): ~4σ structured-vs-random separation
|
||||||
|
on a prototype residual, pending the seven stress-tests before promotion.
|
||||||
|
|
||||||
|
---
|
||||||
|
|
||||||
|
## 9. Open threads
|
||||||
|
|
||||||
|
- **The Sidon-mirror notch test.** The gate's separation number (§7) is computed;
|
||||||
|
the remaining geometric form is the angle sweep — `ε_collapse(θ)` predicted to
|
||||||
|
have a sharp zero at the reflection axis and a positive floor elsewhere, flat
|
||||||
|
for a random sequence. That notch is the §3 reading made quantitative.
|
||||||
|
- **The super/odd decision.** Impose Grassmann anticommutation on the odd block,
|
||||||
|
or keep it plain graded. Gated behind §7.
|
||||||
|
- **The differential number, hardened.** Carry the §7 initial recovery through its
|
||||||
|
seven stress-tests; run `phi.encode_phi` over Corpus250 vs a matched `S⁷` null
|
||||||
|
against the G2 bound, wrapped as an ErdosHarness-style receipt.
|
||||||
|
- **Lock adoption.** Propagate this vocabulary into the repo docs, retiring the
|
||||||
|
superseded labels in §4 (see `ARCHIVE_SUPERSEDED.md`).
|
||||||
72
6-Documentation/docs/geometric-substance/archive_superseded.sh
Executable file
72
6-Documentation/docs/geometric-substance/archive_superseded.sh
Executable file
|
|
@ -0,0 +1,72 @@
|
||||||
|
#!/usr/bin/env bash
|
||||||
|
#
|
||||||
|
# archive_superseded.sh
|
||||||
|
# Relocate documentation superseded by GEOMETRIC_SUBSTANCE_CANONICAL.md into a
|
||||||
|
# read-only archive directory, prepending a banner to each file.
|
||||||
|
#
|
||||||
|
# Non-destructive: uses `git mv` (history preserved) and only prepends text.
|
||||||
|
# Nothing is deleted. Reversible with `git mv` back or by stripping the banner.
|
||||||
|
#
|
||||||
|
# Run from the research-stack repository root.
|
||||||
|
|
||||||
|
set -euo pipefail
|
||||||
|
|
||||||
|
DEST="6-Documentation/docs/_superseded/2026-06" # NOT 'archive/': repo gitignores **/archive/
|
||||||
|
CANON="GEOMETRIC_SUBSTANCE_CANONICAL.md"
|
||||||
|
|
||||||
|
BANNER="> **ARCHIVED — READ ONLY.** Superseded by \`${CANON}\` (2026-06).
|
||||||
|
> Retained for historical traceability. Do **not** use for current work — the
|
||||||
|
> vocabulary and conceptual frame in this file have been reconciled and replaced.
|
||||||
|
|
||||||
|
---
|
||||||
|
"
|
||||||
|
|
||||||
|
if [ ! -d .git ]; then
|
||||||
|
echo "error: run this from the git repository root (no .git/ found here)." >&2
|
||||||
|
exit 1
|
||||||
|
fi
|
||||||
|
|
||||||
|
mkdir -p "$DEST"
|
||||||
|
|
||||||
|
if git check-ignore -q "$DEST" 2>/dev/null; then
|
||||||
|
echo "WARNING: '$DEST' is gitignored — archived files will NOT be tracked or committed." >&2
|
||||||
|
echo " Repo ignores **/archive/. Use a non-'archive' path to keep the archive in git." >&2
|
||||||
|
fi
|
||||||
|
|
||||||
|
archive() {
|
||||||
|
local f="$1"
|
||||||
|
if [ ! -f "$f" ]; then
|
||||||
|
echo "skip (missing): $f"
|
||||||
|
return 0
|
||||||
|
fi
|
||||||
|
local base dest tmp
|
||||||
|
base="$(basename "$f")"
|
||||||
|
dest="$DEST/$base"
|
||||||
|
if [ -e "$dest" ]; then
|
||||||
|
echo "skip (already archived): $dest"
|
||||||
|
return 0
|
||||||
|
fi
|
||||||
|
git mv "$f" "$dest"
|
||||||
|
tmp="$(mktemp)"
|
||||||
|
{ printf '%s\n' "$BANNER"; cat "$dest"; } > "$tmp"
|
||||||
|
mv "$tmp" "$dest"
|
||||||
|
git add "$dest"
|
||||||
|
echo "archived: $f -> $dest"
|
||||||
|
}
|
||||||
|
|
||||||
|
# ─── CONFIRMED superseded (canonical owns their entire purpose) ───────────────
|
||||||
|
archive "6-Documentation/docs/VOCABULARY_LOCK.md"
|
||||||
|
archive "0-Core-Formalism/otom/docs/nuvmap/NUVMAP_NAMING_AND_DEFINITION.md"
|
||||||
|
|
||||||
|
# ─── REVIEW CANDIDATES — uncomment a line only after confirming it is superseded
|
||||||
|
# archive "0-Core-Formalism/otom/docs/wiki/NotationNomenclatureRegistry.md"
|
||||||
|
# archive "6-Documentation/docs/WEIRD_CONCEPTS_GLOSSARY.md"
|
||||||
|
# archive "6-Documentation/docs/GLOSSARY.md"
|
||||||
|
# archive "6-Documentation/wiki/Glossary.md"
|
||||||
|
# archive "obsidian-vault/00-MAP/Glossary.md"
|
||||||
|
# archive "0-Core-Formalism/otom/docs/nuvmap/NUVMAP_DESIGN_REFLECTIONS.md"
|
||||||
|
# archive "0-Core-Formalism/otom/docs/nuvmap/NUVMAP_ENCODING_DOS_AND_DONTS.md"
|
||||||
|
|
||||||
|
echo
|
||||||
|
echo "Done. Review with: git status"
|
||||||
|
echo "Then commit: git commit -m 'Archive docs superseded by ${CANON}'"
|
||||||
|
|
@ -0,0 +1,128 @@
|
||||||
|
"""
|
||||||
|
gate_residual_recovery.py
|
||||||
|
-------------------------
|
||||||
|
Initial recovery for the gravity-consistency gate (to be stress-tested).
|
||||||
|
|
||||||
|
The gate (from GEOMETRIC_SUBSTANCE_CANONICAL.md): the model points to
|
||||||
|
"gravity does not exist" ONLY in the flat-and-torsionless case — braid residual
|
||||||
|
R_ij ≡ 0. Otherwise the geometry gravitates: teleparallel if the curvature part
|
||||||
|
is flat (gravity carried by torsion), Einstein-Cartan if it is not.
|
||||||
|
|
||||||
|
This computes a faithful PROTOTYPE of the residual (not the real BraidField
|
||||||
|
codec): R_ij = B_ij - (B_i + B_j) on a phase-circle model.
|
||||||
|
|
||||||
|
B_i = cos(theta_i) (single-strand polarity)
|
||||||
|
B_ij = cos(theta_i + theta_j) (symmetric joint -> torsion)
|
||||||
|
+ eps * chi_ij * sin(theta_i-theta_j) (antisymmetric -> curvature)
|
||||||
|
R_ij = B_ij - B_i - B_j (the connected/interaction residual)
|
||||||
|
|
||||||
|
Symmetric part of R = torsion-like; antisymmetric part = curvature-like.
|
||||||
|
Achiral (eps=0) => curvature is EXACTLY zero => teleparallel.
|
||||||
|
|
||||||
|
Structured input = a Mian-Chowla Sidon set (all pairwise sums distinct).
|
||||||
|
The Sidon-vs-random separation is measured on the defining property itself
|
||||||
|
(pairwise-sum collisions), which is also what makes the residual non-degenerate.
|
||||||
|
"""
|
||||||
|
|
||||||
|
import numpy as np
|
||||||
|
|
||||||
|
rng = np.random.default_rng(0)
|
||||||
|
|
||||||
|
|
||||||
|
def mian_chowla(n):
|
||||||
|
"""Greedy B_2 (Sidon) sequence: all pairwise sums distinct, by construction."""
|
||||||
|
seq, sums, c = [1], {2}, 2
|
||||||
|
while len(seq) < n:
|
||||||
|
new, ok = [], True
|
||||||
|
for s in seq:
|
||||||
|
v = s + c
|
||||||
|
if v in sums or v in new:
|
||||||
|
ok = False; break
|
||||||
|
new.append(v)
|
||||||
|
if ok and (c + c) not in sums and (c + c) not in new:
|
||||||
|
for s in seq:
|
||||||
|
sums.add(s + c)
|
||||||
|
sums.add(c + c)
|
||||||
|
seq.append(c)
|
||||||
|
c += 1
|
||||||
|
return np.array(seq)
|
||||||
|
|
||||||
|
|
||||||
|
def sum_collisions(s):
|
||||||
|
"""Defining Sidon failure count: #(pairs) - #(distinct pairwise sums)."""
|
||||||
|
s = np.asarray(s)
|
||||||
|
pairs = [s[i] + s[j] for i in range(len(s)) for j in range(i + 1, len(s))]
|
||||||
|
return len(pairs) - len(set(pairs))
|
||||||
|
|
||||||
|
|
||||||
|
def residual(s, N, eps=0.0, chi=None):
|
||||||
|
th = 2 * np.pi * np.asarray(s, float) / N
|
||||||
|
Bi = np.cos(th)
|
||||||
|
sym = np.cos(th[:, None] + th[None, :]) # torsion-bearing
|
||||||
|
if eps != 0.0 and chi is not None:
|
||||||
|
asym = eps * chi * np.sin(th[:, None] - th[None, :]) # curvature-bearing
|
||||||
|
else:
|
||||||
|
asym = 0.0
|
||||||
|
Bij = sym + asym
|
||||||
|
return Bij - Bi[:, None] - Bi[None, :]
|
||||||
|
|
||||||
|
|
||||||
|
def split(R):
|
||||||
|
Rs = 0.5 * (R + R.T) # symmetric -> torsion
|
||||||
|
Ra = 0.5 * (R - R.T) # antisymmetric -> curvature
|
||||||
|
fro = np.linalg.norm(R)
|
||||||
|
return np.linalg.norm(Rs), np.linalg.norm(Ra), fro
|
||||||
|
|
||||||
|
|
||||||
|
if __name__ == "__main__":
|
||||||
|
n = 16
|
||||||
|
S = mian_chowla(n)
|
||||||
|
M = int(S.max())
|
||||||
|
N = 2 * M + 1 # phase modulus chosen so sums never wrap-collide
|
||||||
|
print(f"Sidon set (Mian-Chowla, n={n}): {S.tolist()}")
|
||||||
|
print(f"max={M}, phase modulus N={N}")
|
||||||
|
print(f"sum-collisions (structured): {sum_collisions(S)} (0 == perfectly Sidon)\n")
|
||||||
|
|
||||||
|
# --- Gate condition 1: torsion present, curvature class -------------------
|
||||||
|
# achiral
|
||||||
|
R0 = residual(S, N, eps=0.0)
|
||||||
|
tor0, cur0, fro0 = split(R0)
|
||||||
|
# chiral (imbalanced handedness): fixed left-handed crossings
|
||||||
|
chi = np.ones((n, n))
|
||||||
|
Rc = residual(S, N, eps=0.5, chi=chi)
|
||||||
|
torc, curc, froc = split(Rc)
|
||||||
|
|
||||||
|
print("RESIDUAL / CURVATURE-TORSION SPLIT")
|
||||||
|
print(f" achiral: ||R||={fro0:.4f} torsion(sym)={tor0:.4f} curvature(asym)={cur0:.2e}")
|
||||||
|
print(f" -> curvature {'== 0 => TELEPARALLEL' if cur0 < 1e-9 else '!= 0'}")
|
||||||
|
print(f" chiral : ||R||={froc:.4f} torsion(sym)={torc:.4f} curvature(asym)={curc:.4f}")
|
||||||
|
print(f" -> curvature {'!= 0 => EINSTEIN-CARTAN' if curc > 1e-9 else '== 0'}")
|
||||||
|
print(f" (gravity-denying would require ||R|| == 0; here ||R|| = {fro0:.4f})\n")
|
||||||
|
|
||||||
|
# --- Gate condition 2: structured vs random separation -------------------
|
||||||
|
TRIALS = 5000
|
||||||
|
rand_coll = np.empty(TRIALS)
|
||||||
|
for t in range(TRIALS):
|
||||||
|
r = rng.choice(np.arange(1, M + 1), size=n, replace=False)
|
||||||
|
rand_coll[t] = sum_collisions(r)
|
||||||
|
mu, sd = rand_coll.mean(), rand_coll.std()
|
||||||
|
z = (sum_collisions(S) - mu) / sd
|
||||||
|
frac_random_clean = np.mean(rand_coll == 0)
|
||||||
|
|
||||||
|
print(f"SIDON SEPARATION vs {TRIALS} random {n}-subsets of [1,{M}]")
|
||||||
|
print(f" structured sum-collisions : 0")
|
||||||
|
print(f" random mean +/- std : {mu:.2f} +/- {sd:.2f}")
|
||||||
|
print(f" z-score : {z:.2f}")
|
||||||
|
print(f" random sets that are Sidon: {100*frac_random_clean:.2f}%\n")
|
||||||
|
|
||||||
|
# --- Gate verdict --------------------------------------------------------
|
||||||
|
flat = fro0 < 1e-9
|
||||||
|
print("GATE VERDICT (initial recovery, to be stress-tested)")
|
||||||
|
print(f" flat-and-torsionless (gravity-denying)? {flat}")
|
||||||
|
if not flat:
|
||||||
|
cls = "TELEPARALLEL (curvature 0, gravity in torsion)" if cur0 < 1e-9 else "Einstein-Cartan"
|
||||||
|
print(f" geometry gravitates; achiral class: {cls}")
|
||||||
|
print(f" structure beats random by z = {z:.1f} -> 'something rather than nothing'")
|
||||||
|
print(" => model AFFIRMS gravity; does NOT point to gravity not existing. GATE OPENS.")
|
||||||
|
else:
|
||||||
|
print(" => residual flat; gate stays CLOSED.")
|
||||||
Loading…
Add table
Reference in a new issue