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Paper Explicit G2 Metric
Brieuc de La Fournière edited this page Mar 12, 2026
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An Explicit Approximate G2 Metric on a Compact TCS 7-Manifold with Certified Torsion-Free Completion
Brieuc de La Fournière (2026) Full text (markdown) | Zenodo DOI: 10.5281/zenodo.18860358
Constructs explicit 169-parameter Chebyshev-Cholesky metric on compact TCS K7. Newton-Kantorovich certificate proves unique torsion-free G2 metric g* exists within distance ×ばつ10−6. Initial torsion ‖T‖ = ×ばつ10−2 reduced to ×ばつ10−5 in 5 Joyce iterations (×ばつ reduction).
| Quantity | Value |
|---|---|
| Initial torsion ‖T‖0 | ×ばつ10−2 |
| Final torsion ‖T‖5 | ×ばつ10−5 |
| Reduction factor | ×ばつ |
| NK contraction h | ×ばつ10−8 |
| NK threshold | 0.5 |
| Safety margin | ×ばつ7.5M |
| Distance to exact metric | ≤ ×ばつ10−6 |
| Property | Value |
|---|---|
| Parameters | 169 (168 Chebyshev + 1 ACyl decay) |
| det(g) | 65/32 (exact) |
| |φ|2 | 42 (error < 10−14) |
| Holonomy | Hol(g*) = G2 |
| Torsion class | 99.6% in W3, |dφ|2/|d*φ|2 = 1/5 |
Three-scale structure:
- Neck (seam): λ0 ≈ 6.8
- T2 (fiber): λ1,6 ≈ 2.9
- K3 (fiber): λ2−5 ≈ 1.1
- Introduction — Context, objective, scope & claims
- The Manifold — TCS construction, topology (b2=21, b3=77)
- The Metric — Model hierarchy, coordinates, Chebyshev-Cholesky parametrization
- Norm Definitions & Domain — Metric distance, torsion norms, NK norm
- Torsion Analysis — Initial approximation, K3 verification, Gauss-Newton reduction
- Certification — NK convergence, interval arithmetic, holonomy proof
- Geometric Invariants — det(g)=65/32, |φ|2=42, Hol(g*)=G2
- Discussion — Limitations, comparison with prior work
- Reproducibility — Data files, companion notebook (< 1 min runtime)
- TCS visualization with torsion intensity coloring
- Atlas chart schematic
- Eigenvalue profile (three-scale hierarchy)
- Torsion convergence (log scale, 5 iterations)
- Paper Main Framework — Physics application
- Paper S1 Foundations — TCS construction theory
- Paper Spectral Geometry — Spectral analysis of this metric
- For Geometers — Computational pipeline overview
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