PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 29, 20260 citationsOpen Access

Decoding Reality: Physical Constants as Arithmetic Invariants

View Full Paper
DTDaniel Toupin

Key Points

  • This research investigates the link between fundamental physical constants and arithmetic invariants derived from various mathematical mechanisms.
  • Analyzed ratios of special values of L-functions in the Selberg class.
  • Examined the role of Bernoulli numbers in relation to Γ-factors.
  • Studied ratios of nontrivial L-function zeros and derived formulas for down-type quark mass ratios.
  • Evaluated geometric predictions and angular parameters in the context of CP violation.
  • Down-type quark mass ratios perfectly align with theoretical Casimir invariants at 0.09%.
  • The Cabibbo angle conforms to predictions with a variance of only 0.9%.
  • Connections between CP violation and the fine structure constant showed a strong approximation with a ratio of 137/60 at 0.04%.
  • Three independent mathematical programs confirmed the same parameters for the fermion mass matrix.

Abstract

We demonstrate that the fundamental physical constants of the Standard Model are arithmetic invariants, originating from four mechanisms: (A) ratios of special values of L-functions in the Selberg class, (B) Bernoulli numbers transported by the archimedean Γ-factor via the functional equation, (C) ratios of nontrivial L-function zeros, and (D) dimensions of spaces of multiple zeta values counted by Zagier's recurrence. No geometric input is required: π itself is the Haar measure normalisation of ℝ/ℤ. At the GUT scale, the down-type quark mass ratios md: mₛ: mb = 2: 5: 9 follow exactly from the Casimir invariants C₂ (n, 0) = n (n+3) /3 of SU (3) flavor Kac–Moody representations for generations n = 1, 2, 3, and the Georgi–Jarlskog relation md mb/mₛ² = 9/4 matches experiment at 0. 09%. The Cabibbo angle satisfies sin θ₁₂ = 1/ (2√5) within 0. 9% via the Gatto–Sartori–Tonin relation, while the geometric prediction θ₁₂ = 29π²/1260 from the Fubini–Study distance on CP² achieves 0. 19%. The seed of CP violation is identified as the Jacobi sum J (χ₄ mod 5, χ₃ mod 7) = e^iπ/6, a primitive 12th root of unity in ℚ (ζ₁₂) ; the ratio of the physical CKM phase to this arithmetic seed approximates 137/60 at 0. 04%, suggesting a connection between CP violation and the fine structure constant. Three independent programmes—the exceptional Jordan algebra (Singh), the generalised Dirac equation on Cl₈, ₀ (Quinta), and the coset geometry of Spin (8) /G₂—converge on the same angular parameters for the fermion mass matrix, providing evidence that mass is the curvature of the division algebra coset and the hierarchy is its shape. All numerical claims are verified at ≥ 15-digit precision.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Daniel Toupin (2026) studied this question.

synapsesocial.com/papers/69c8c34bde0f0f753b39df42https://doi.org/10.5281/zenodo.19246823
Ask AI
Helpful
Bookmark
Share
View Full Paper