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April 18, 20260 citationsOpen Access

Geometric Reconstruction of CKM Mixing and CP Violation from a Discrete H4/Fibonacci Framework with an Exploratory Extension to PMNS Mixing

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TKTakada KenEEnumiaze

Key Points

  • The study aims to reconstruct the flavor mixing sector of the CKM matrix using a geometric approach involving Fibonacci numbers and symmetry principles.
  • Developed a discrete-geometric framework within UNIVERSE131.
  • Assigned geometric values to key CKM parameters such as the Cabibbo parameter and CP phase.
  • Investigated the extension to the PMNS mixing sector with an emphasis on solar mixing.
  • Achieved a benchmark agreement for CKM data within a few percent.
  • Assigned the Cabibbo parameter a rational value (3/13), and the CP phase an angle of approximately 67.54 degrees.
  • Showed the unitarity triangle radius aligns with experimental fits, while confirming exactly three generations of particles.

Abstract

Abstract This paper presents a discrete-geometric reconstruction of the flavor-mixing sector within the UNIVERSE131 framework. It proposes that the hierarchical structure of the CKM matrix and the origin of the three generations are not arbitrary parameters, but emerge from the ratio structure of low Fibonacci numbers and the fivefold symmetry of the H4/600-cell polytope. Core Findings (Layer A/B) The model assigns exact geometric values to fundamental mixing parameters, achieving benchmark agreement within a few percent for the leading-order CKM data: Cabibbo Parameter (): Assigned the exact rational value F₄/F₇ = 3/13 0. 2308. CP Phase (₂₏): Assigned the geometric angle (^-2) 67. 54^. Unitarity Triangle Radius (|+i|): Set to ^-2 0. 3820, consistent with experimental fits. Generation Count: The existence of exactly three generations is associated with the factorization of the Pisano period (9) = 24 = 3 8. Exploratory Extensions (Layer C) The paper records an extension to the leptonic (PMNS) sector. While the solar mixing angle is reproduced with high accuracy (33. 7^), the reactor and atmospheric sectors are treated as exploratory directions for future work. Methodology and Reproducibility Following the calibrated claim hierarchy of the program, the paper maintains a strict boundary between robust algebraic statements and phenomenological readings. To ensure reproducibility while protecting the proprietary source implementation, the paper provides explicit mathematical definitions and a complete algorithmic protocol for independentverification.

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Cite This Study

Ken et al. (2026) studied this question.

synapsesocial.com/papers/69e320af40886becb653fc9fhttps://doi.org/10.5281/zenodo.19601311
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Calibrated Discrete-Geometric CKM Reconstruction with Dynamical Extensions from an H4/E8 Fivefold Framework2026
  2. 2The Mixing Matrix Architecture: A Cascade Geometric Derivation of the CKM and PMNS Parameters — With the First Geometric Origin of the Quark-Lepton Complementarity Relation2026
  3. 3CP-Violating Phases of the CKM and PMNS Matrices from the T₁u Eigenvalue Ratio2026
  4. 4BCT Letter 8: The Complete CKM and PMNS Mixing Matrices from Tetrahedral Void Symmetry2026
  5. 5CKM and PMNS Predictions with CKM Matrix from a Foundation–Projection Two-Angle Rotation2026