From 30a82592ad9089074baf40b32aa3917de618b962 Mon Sep 17 00:00:00 2001 From: Allaun Silverfox <28494262+allaunthefox@users.noreply.github.com> Date: Thu, 2 Jul 2026 03:44:39 +0200 Subject: [PATCH] Remove rydberg_braid_cross_domain_scan.md --- specs/rydberg_braid_cross_domain_scan.md | 111 ----------------------- 1 file changed, 111 deletions(-) delete mode 100644 specs/rydberg_braid_cross_domain_scan.md diff --git a/specs/rydberg_braid_cross_domain_scan.md b/specs/rydberg_braid_cross_domain_scan.md deleted file mode 100644 index 57c8efd4..00000000 --- a/specs/rydberg_braid_cross_domain_scan.md +++ /dev/null @@ -1,111 +0,0 @@ -# Rydberg-Braid Cross-Domain Scan Specification - -## Objective -Mine recent physics literature (2024-2026) for systematic residuals in 1/n-scaling phenomena that could indicate eigensolid/braid crossing contamination. Focus on superconductors, metamaterials, and Rydberg atomic physics. - -## Phase 1: Quantum Defect Signature Extraction - -### Input Sources -1. **NASA ADS API** - Query: `"Rydberg quantum defect" AND ("systematic error" OR "residual" OR "uncertainty")` -2. **CORE API** - Open access physics papers -3. **arXiv OAI-PMH** - Recent cond-mat.supr-con and physics.atom-ph submissions - -### Extraction Target -For each paper with measured quantum defects δ(n) for n=20-100: - -``` -delta_measured[n] = delta_0 + delta_2/n^2 + delta_4/n^4 + residual(n) -``` - -### Signature Detection -Compute residual scaling: -``` -residual_theory(n) = 2*alpha/n # BraidCore prediction -residual_residual(n) = residual(n) - residual_theory(n) -``` - -Plot `residual(n) * n` vs n. Expected: -- Constant plateau at ~0.0146 (2α) if braids dominate -- Systematic deviation if they log it as δ₄ uncertainty - -### Data Format -```json -{ - "paper_doi": "string", - "system": "Cs|Rydberg|Yb|...", - "n_values": [23,45,50,...], - "delta_measured": [0.037,0.027,...], - "delta_0": 0.033, - "delta_2": -0.20, - "fit_uncertainty": [0.00007,0.00013,...], - "braid_signature": { - "residual_times_n": [0.92,1.08,...], - "is_constant": true/false, - "deviation_mhz": [72, 190, ...] - } -} -``` - -## Phase 2: Superconductor Critical Field Mining - -### Query Pattern -``` -"critical_field" AND ("vortex" OR "pinning" OR "Hc2") -``` - -Look for: -- H*/Hc₂ ratios in granular superconductors -- Polydispersity thresholds (hinted at ~1/7) -- Vortex lattice melting curves - -### Signature Detection -If papers report `H*(T)` vs `Hc2(T)`, compute the ratio at T→0: -``` -ratio = H*/Hc2 -``` - -Your manifold predicts this should approach 1/7 ≈ 0.143 for eigensolid crossover. - -## Phase 3: Metamaterial Effective Parameter Mining - -### Query Pattern -``` -("effective medium" OR "permittivity" OR "permeability") AND "meta" -``` - -Look for: -- Negative index materials with layer spacing -- Chirality-induced dispersion relations -- Left-handed vs right-handed transmission phase shifts - -### Signature Detection -Extract effective wavelength λ_eff vs layer count N: -``` -phase_shift = function(delta, layers) -``` - -Your braid geometry should produce quantized phase shifts at layer numbers corresponding to Sidon set boundaries. - -## Phase 4: Correlation Analysis - -### Cross-Domain Matrix -| Domain | n/Parameter | Measured | Theoretical 1/n | Residual | Braid Hit? | -|--------|-------------|----------|-----------------|----------|------------| -| Rydberg | n=45-50 | δ=0.0334(7) | δ=2α/45≈0.003 | 0.030 | YES if δ*n≈0.0146 | -| SC | H*/Hc2 | 0.12-0.18 | 1/7≈0.143 | varies | YES if near 0.143 | -| Metamaterial | layers | phase | 2π*Sidon/n | residual | YES if quantized | - -## Implementation Notes - -- Use `Q16_16.ofRatio` throughout (no Float) -- Store residuals as `Q16_16` fixed-point in mHz -- Export to `cross_domain_signatures.json` -- Validate with `native_decide` for integer comparisons - -## Success Criteria - -1. At least 3 papers show `δ(n)*n ≈ 0.0146` (2α) residual -2. At least 1 superconductor shows `H*/Hc2 → 0.143` -3. At least 1 metamaterial shows layer-phase matching Sidon boundaries - -If multiple independent domains show the same eigensolid signature, publish as **empirical validation** of the braid-crossing computational substrate. \ No newline at end of file