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March 15, 202610 citationsOpen Access

A Geometric Origin of a GeV-Scale Triplet in Conical Fibonacci Hierarchies

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AOArchitect OneThreeSeven

Key Points

  • This research aims to explore how a conical Fibonacci spiral generates hierarchical mass spectra.
  • Constructed a geometric model based on conical Fibonacci structures.
  • Analyzed radial hierarchy influenced by a small parameter and angular hierarchy governed by the golden ratio.
  • Investigated possible excess resonances in B⁺ decays at the Belle II experiment.
  • Identified a GeV-scale triplet with values (1.5, 2.4, 3.9) GeV.
  • Established a geometric center of hierarchy near 2.4 GeV associated with the golden ratio.
  • Future Belle II statistics may confirm the existence of this geometric hierarchy.

Abstract

This work explores a geometric mechanism generating hierarchical mass spectra using a conical Fibonacci spiral. The construction introduces two independent hierarchical directions: a radial hierarchy governed by a small parameter ε and an angular hierarchy governed by the golden ratio φ. The resulting angular hierarchy naturally produces a GeV-scale triplet (1.5, 2.4, 3.9) GeV with approximately logarithmic spacing. Interestingly, the central scale lies close to the region currently explored in searches for invisible particles in B⁺ → K⁺ + invisible decays at the Belle II experiment. Recent analyses suggest a possible excess compatible with a resonance near mₓ ≈ 2.1⁺⁰·²₋₀·¹ GeV. Within the geometric framework considered here, the scale around 2.4 GeV appears as the geometric center of the hierarchy. Future Belle II statistics will clarify whether such a geometric hierarchy may be present in the data.

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Architect OneThreeSeven (2026) studied this question.

synapsesocial.com/papers/69b5ff8083145bc643d1c1echttps://doi.org/10.5281/zenodo.18998992
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