From fba9dec53c41ee5c7ae6c7588b90b76c5727f893 Mon Sep 17 00:00:00 2001 From: Claude Date: Fri, 22 May 2026 10:33:45 +0000 Subject: [PATCH] docs: add UCNS-G prime-cylinder metric geometry v3 MIME-Version: 1.0 Content-Type: text/plain; charset=UTF-8 Content-Transfer-Encoding: 8bit Mirror of the canonical UCNS-G v3 pin from edcmbone. Pins UCNS-G as a prime-indexed tensor of non-closing Möbius-cylinder metric disks: one disk per metric axis, signed ternary axis state, twist as ordinal zero-boundary, typed unit gauge, and a token/turn/round/session/archive grain tensor. Relevant here because UnitCircle already renders primes on a unit circle under modular projection and supports a Möbius-style doubled outer surface; the v3 pin formalizes that visualization as a canonical audit projection for UCNS-G. The UCNS-A / UCNS-G firewall is preserved: no UCNS-A theorem scope flows into UCNS-G metric claims. https://claude.ai/code/session_01U5nrk7skCVKV9gQ6Pdikob --- .../2026-05-22-ucns-g-prime-cylinder-v3.md | 351 ++++++++++++++++++ 1 file changed, 351 insertions(+) create mode 100644 docs/handoffs/2026-05-22-ucns-g-prime-cylinder-v3.md diff --git a/docs/handoffs/2026-05-22-ucns-g-prime-cylinder-v3.md b/docs/handoffs/2026-05-22-ucns-g-prime-cylinder-v3.md new file mode 100644 index 0000000..a6f77e4 --- /dev/null +++ b/docs/handoffs/2026-05-22-ucns-g-prime-cylinder-v3.md @@ -0,0 +1,351 @@ +# Session Handoff v3 — UCNS-G Prime-Cylinder Metric Geometry + +**Status:** Supersedes UCNS metric geometry handoff v2 where v2 describes UCNS-G as a single `(r, θ, z)` point or treats twist as θ/double-cover behavior. +**Date pinned:** 2026-05-22 +**Scope:** UCNS-G / EDCM metric geometry only. Does not modify UCNS-A theorem scope. +**Firewall:** UCNS-A Theorem N remains scoped to UCNS-A factorization algebra. Nothing here inherits proof status from UCNS-A. + +## 0. Carry the UCNS-A / UCNS-G firewall + +UCNS-A and UCNS-G remain distinct unless an explicit bridge is proven. + +UCNS-A is the recursive factorization algebra in `The-Interdependency/ucns`. + +UCNS-G is the EDCM metric geometry described here. + +Do not allow UCNS-A proof claims to validate UCNS-G metric claims. + +## 1. v2 correction + +v2 described UCNS-G as: + +```text +(r, θ, z) +``` + +That is too small. + +A single `(r, θ, z)` point describes one projected metric-disk state. It does not describe the full EDCM metric geometry. + +Corrected: + +```text +UCNS-G = prime-indexed tensor of non-closing Möbius-cylinder metric disks. +``` + +Each metric receives its own disk/cylinder trace. + +Each turn is a tensor sample across metric disks. + +Each round is an ordered tensor of turn tensors. + +Each session is an ordered tensor of round tensors. + +A “disk of disks” may be used for visualization, but the canonical structure is an ordered tensor/bundle of disks. + +## 2. Metric disks + +For every metric axis `A`, define a metric disk: + +```text +D_A +``` + +A metric point is: + +```text +MetricPoint_A = { + axis: A, + prime_axis: p_A, + grain: token | turn | round | session | archive, + twist_ordinal: τ, + phase: φ, + face: +1 | -1, + sign: -1 | 0 | 1, + magnitude: m, + gauge: radius | circumference | area | depth, + confidence: c +} +``` + +## 3. Signed ternary axes + +Every EDCM metric axis has state: + +```text +state_A(W) = (s_A, m_A) +``` + +where: + +```text +s_A ∈ {-1, 0, 1} +m_A ∈ [0, 1] +``` + +`0` is not scalar absence. It is neutral / unresolved / no measurable directional commitment. + +## 4. Phase/percent remains a projection + +Percent/phase is still valid for: + +```text +operator density +area-percent +metric magnitude +completion fraction +window-relative proportions +``` + +But it is not canonical identity. + +```text +phase/percent view = local projection +ordinal twist view = traversal identity +axis/sign view = directional EDCM measurement +``` + +## 5. Twist is ordinal zero-boundary + +Twist is not an angle value. + +Twist is the ordinal seam / zero-boundary. + +```text +zero = twist_0 +360° = phase zero at twist_1 +720° = phase zero at twist_2 +1080° = phase zero at twist_3 +``` + +Therefore: + +```text +same phase ≠ same state +same zero-looking point ≠ same ordinal zero +``` + +Canonical state requires: + +```text +(twist_ordinal, phase, face/orientation) +``` + +not only: + +```text +θ mod 360° +``` + +or: + +```text +θ mod 720° +``` + +## 6. Non-closing Möbius-cylinder graph + +UCNS-G graphs do not close. + +Local disk projection: + +```text +phase 1 → phase 0 +``` + +Canonical ordinal graph: + +```text +(twist_n, phase=1) → (twist_{n+1}, phase=0) +``` + +Möbius face rule: + +```text +face_{n+1} = -face_n +``` + +or bit form: + +```text +face_{n+1} = face_n XOR 1 +``` + +Spec rule: + +```text +The disk closes only from the local perspective. +The graph does not close from the ordinal perspective. +``` + +## 7. Sine-wave projection + +A circle projected onto one axis is a sine wave: + +```text +y = r · sin(2πφ) +``` + +The Möbius/ordinal lift is: + +```text +y_n = (-1)^n · r · sin(2πφ) +``` + +where: + +```text +n = twist_ordinal +``` + +If `n` is collapsed, the twist is lost. + +## 8. Unit gauge + +A metric disk is unit-normalized but not unit-identical. + +Typed unit ones: + +```text +1_R = full radius +1_C = full circumferential traversal +1_A = full area coverage +1_Z = one ordinal recurrence / depth layer +``` + +These may all display as `1`, but they are not the same unit. + +Spec line: + +```text +The twist hides zero. +The gauge hides one. +``` + +## 9. Perspective + +Perspective is load-bearing. + +Inside a metric disk: + +```text +the disk is centered +zero is local +the circle appears closed +``` + +From the parent/auditor frame: + +```text +the disk is displaced +zero is ordinal seam/contact +the graph does not close +``` + +## 10. Epicycles + +An epicycle is: + +```text +locally centered +globally uncentered +``` + +Formal: + +```text +An epicycle is a locally centered child disk whose center is externally +located at an anchor of a parent disk. +``` + +Classical: + +```text +center(child) ∈ circumference(parent) +``` + +General UCNS-G: + +```text +center(child) = anchor(parent) +``` + +The parent anchor may be a circumference point, twist point, prime carrier point, metric-axis point, or grain boundary. + +## 11. Prime-cylinder audit projection + +Prime-cylinder visualization is the canonical audit projection for UCNS-G across granularity. + +It renders each metric disk as a prime-indexed non-closing Möbius-cylinder trace. + +Suggested primitive prime assignment: + +```text +P → 2 +K → 3 +Q → 5 +T → 7 +S → 11 + +C → 13 +R → 17 +D → 19 +N → 23 +L → 29 +O → 31 +F → 37 +E → 41 +I → 43 +``` + +Primitive metrics sit on prime anchors. + +Composite positions may represent interactions/couplings. + +Spec line: + +```text +Prime cylinder shows where the disk closes locally but not canonically. +``` + +## 12. Grain tensor + +Canonical grain structure: + +```text +MetricDisk_A = non-closing prime-indexed Möbius-cylinder trace for axis A + +Turn_i = tensor sample across metric disks + +Round_j = ordered tensor of Turn_i states + +Session_k = ordered tensor of Round_j states + +Archive = ordered tensor of Session_k states +``` + +Parent disks are projections, not identity. + +```text +parent_disk = projection(child_tensor) +``` + +not: + +```text +parent_disk = child_tensor +``` + +## 13. hmmm + +Open items: + +* Formal exchange rules between typed units `1_R`, `1_C`, `1_A`, `1_Z`. +* Exact prime assignment for all EDCM and Operator axes. +* Whether prime interactions should be represented by multiplication, graph edges, epicycle attachment, or separate coupling tensors. +* How DRIFT/DVG/DA map onto area/count/length readouts in the new prime-cylinder graph. +* Whether UCNS-A can provide a formal bridge to this UCNS-G structure, or whether UCNS-G remains a parallel construction. +* Whether current scalar EDCM code should be migrated through schema first or code first. +* How to encode signed ternary axis states in frontend/API types without breaking current scalar projections. + +## hmmm