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Citation Guide

Brieuc edited this page Mar 12, 2026 · 1 revision

Citation Guide

Citation formats for the GIFT Framework v3.3.

Software Citation (Recommended)

BibTeX

@software{gift_framework_v33,
 title = {GIFT Framework v3.3: Geometric Information Field Theory},
 author = {de La Fournière, Brieuc},
 year = {2026},
 url = {https://github.com/gift-framework/GIFT},
 version = {3.3.24},
 license = {MIT},
 note = {33 dimensionless predictions, 0.24\% mean deviation (32 well-measured, PDG 2024 / NuFIT 6.0), 290+ certified relations}
}

APA Style

de La Fournière, B. (2026). GIFT Framework v3.3: Geometric Information Field Theory (Version 3.3.24) [Software]. GitHub. https://github.com/gift-framework/GIFT

Chicago Style

de La Fournière, Brieuc. "GIFT Framework v3.3: Geometric Information Field Theory." Version 3.3.24. GitHub, 2026. https://github.com/gift-framework/GIFT.

Theoretical Framework Citation

BibTeX

@article{gift_theory_v33,
 title = {Geometric Information Field Theory v3.3: Topological Determination of Standard Model Parameters},
 author = {de La Fournière, Brieuc},
 year = {2026},
 note = {Mean deviation 0.24\% across 32 well-measured observables (PDG 2024 / NuFIT 6.0), zero continuous adjustable parameters, 290+ proven exact relations},
 url = {https://github.com/gift-framework/GIFT}
}

Citing Specific Documents

Main Paper

@misc{gift_main_v33,
 title = {Geometric Information Field Theory: Topological Determination of Standard Model Parameters},
 author = {de La Fournière, Brieuc},
 year = {2026},
 howpublished = {GIFT Framework v3.3},
 url = {https://github.com/gift-framework/GIFT/blob/main/publications/papers/markdown/GIFT_v3.3_main.md}
}

S1: Foundations

@misc{gift_s1_foundations,
 title = {GIFT S1: Mathematical Foundations - E8, G2, K7},
 author = {de La Fournière, Brieuc},
 year = {2026},
 howpublished = {GIFT Framework v3.3, Supplement S1},
 url = {https://github.com/gift-framework/GIFT/blob/main/publications/papers/markdown/GIFT_v3.3_S1_foundations.md}
}

S2: Derivations

@misc{gift_s2_derivations,
 title = {GIFT S2: Complete Derivations - 33 Dimensionless Observables},
 author = {de La Fournière, Brieuc},
 year = {2026},
 howpublished = {GIFT Framework v3.3, Supplement S2},
 url = {https://github.com/gift-framework/GIFT/blob/main/publications/papers/markdown/GIFT_v3.3_S2_derivations.md}
}

Citing Specific Results

CP Violation Phase

×ばつdim(G2) + H* = ×ばつ14 + 99 = 197°}, url = {https://github.com/gift-framework/GIFT/blob/main/publications/papers/markdown/GIFT_v3.3_S2_derivations.md} }">
@misc{gift_cp_violation,
 title = {Exact Topological Formula for CP Violation Phase: δ_CP = 197°},
 author = {de La Fournière, Brieuc},
 year = {2026},
 howpublished = {GIFT Framework v3.3},
 note = {Formula: δ_CP = dim(K7)×ばつdim(G2) + H* = ×ばつ14 + 99 = 197°},
 url = {https://github.com/gift-framework/GIFT/blob/main/publications/papers/markdown/GIFT_v3.3_S2_derivations.md}
}

Weinberg Angle

@misc{gift_weinberg_angle,
 title = {Topological Derivation of Weinberg Angle: sin2θ_W = 3/13},
 author = {de La Fournière, Brieuc},
 year = {2026},
 howpublished = {GIFT Framework v3.3},
 note = {Formula: sin2θ_W = b2/(b3 + dim(G2)) = 21/91 = 3/13},
 url = {https://github.com/gift-framework/GIFT/blob/main/publications/papers/markdown/GIFT_v3.3_S2_derivations.md}
}

Generation Number

@misc{gift_generation_number,
 title = {Topological Proof of Three Fermion Generations},
 author = {de La Fournière, Brieuc},
 year = {2026},
 howpublished = {GIFT Framework v3.3},
 note = {N_gen = 3 from Atiyah-Singer index theorem on K7},
 url = {https://github.com/gift-framework/GIFT/blob/main/publications/papers/markdown/GIFT_v3.3_S1_foundations.md}
}

Formal Verification

@software{gift_core_v3319,
 title = {GIFT Core: Formal Verification in Lean 4},
 author = {de La Fournière, Brieuc},
 year = {2026},
 url = {https://github.com/gift-framework/core},
 version = {3.3.24},
 note = {290+ relations verified, K7 metric pipeline, Selection Principle, Spectral Theory}
}

Explicit G2 Metric (Companion Paper)

BibTeX

@misc{gift_explicit_g2_metric,
 title = {An Explicit Approximate G2 Metric on a Compact TCS 7-Manifold with Certified Torsion-Free Completion},
 author = {de La Fournière, Brieuc},
 year = {2026},
 doi = {10.5281/zenodo.18860358},
 url = {https://doi.org/10.5281/zenodo.18860358},
 note = {169-parameter Chebyshev--Cholesky metric, NK-certified torsion-free completion, h = 6.65e-8}
}

Spectral Geometry (Companion Paper)

BibTeX

@misc{gift_spectral_geometry,
 title = {Spectral Geometry of an Explicit G2 Metric on a Compact 7-Manifold},
 author = {de La Fournière, Brieuc},
 year = {2026},
 doi = {10.5281/zenodo.18920368},
 url = {https://doi.org/10.5281/zenodo.18920368},
 note = {KK tower, Yukawa couplings, gauge unification, b2=21, b3=77, spectral gap λ1=0.1244}
}

DOI Information

Archive Link
Zenodo (framework) 10.5281/zenodo.18837071
Zenodo (explicit G2 metric) 10.5281/zenodo.18860358
Zenodo (spectral geometry) 10.5281/zenodo.18920368
ResearchGate Author page

Version History

Version Date Highlights
3.3.24 2026年03月02日 NuFIT 6.0 update, new neutrino formulas, Weyl→w rename, S1 softened, publications cleaned
3.3.19 2026年02月21日 S3 removal, cross-ref cleanup, sync with core v3.3.19
3.3.18 2026年02月21日 Bullet-proof validation: Westfall-Young maxT, multi-stat PPC, noise curve, 3M+ exhaustive
3.3.17 2026年02月04日 θ23 formula correction, α_s = √2/12, 0.21% mean deviation
3.3.14 2026年01月28日 Selection Principle, TCS Spectral Bounds, 290+ relations, Lean 4 only
3.3.0 2026年01月12日 33 observables, PDG 2024 values, 192,349-config Monte Carlo
3.1.0 2025年12月17日 Analytical G2 metric, 185 certified relations
3.0.0 2025年12月09日 Major release: 165+ certified relations, Fibonacci/Monster/McKay
2.3.x 2025-12 Lean 4 verification
2.2.0 2025年11月27日 Zero-parameter paradigm
2.1.0 2025年11月22日 Torsional dynamics
2.0.0 2025年10月24日 Framework reorganization

Usage in Publications

When using GIFT predictions:

  1. Cite framework - Use software citation above
  2. Cite specific results - Use appropriate document citation
  3. Specify version - Always include version number (v3.3)
  4. Link repository - Include GitHub URL for reproducibility

Example

"We compare our measurements with predictions from the Geometric Information Field Theory (GIFT) framework [1], which derives Standard Model parameters from ×ばつE8 topology. The GIFT prediction for the CP violation phase is δ_CP = 197° [2]."

[1] de La Fournière, B. "GIFT Framework v3.3," 2026, https://github.com/gift-framework/GIFT

[2] de La Fournière, B. "GIFT S2: Complete Derivations," 2026.


License

MIT License - See LICENSE


Version: 3.3.24 (2026年03月02日)

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