Photon-Resonance Origin Model for Elementary Particle Generation

This study presents a unified physical framework based on the premise that all matter emerges from photons. In this model, elementary particles arise from closed vortex structures generated by resonant photons, interpreted as torsional waves of an underlying spacetime fluid. When photon resonance forms a stable vortex, the resulting structure gives rise to electrons, positrons, quarks, neutrinos, and other elementary particles. The vortex compresses the surrounding spacetime fluid and induces inflow, providing natural geometric explanations for inertial mass, gravity, and time dilation. Fundamental parameters of the Standard Model—such as electric charge, spin, color charge, and generational structure—are reinterpreted as geometric and topological properties of vortex configurations, including winding number, knot structure, and phase topology. The photon‑resonance model encompasses the Standard Model as its low‑energy limit and predicts new resonant modes corresponding to higher winding numbers . This work proposes a unified physical picture in which matter, light, gravity, and time arise from a single fluid‑dynamical foundation, establishing a basis for future mathematical refinement and experimental verification.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-05
DOI
https://doi.org/10.5281/zenodo.23161880
Primary Topic
Relativity and Gravitational Theory
Type
preprint
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preprint

Photon-Resonance Origin Model for Elementary Particle Generation

Masahiro Shindo
Zenodo (CERN European Organization for Nuclear Research)
Relativity and Gravitational Theory
preprint

Photon-Resonance Origin Model for Elementary Particle Generation

Masahiro Shindo
preprint en

Abstract

This study presents a unified physical framework based on the premise that all matter emerges from photons. In this model, elementary particles arise from closed vortex structures generated by resonant photons, interpreted as torsional waves of an underlying spacetime fluid. When photon resonance forms a stable vortex, the resulting structure gives rise to electrons, positrons, quarks, neutrinos, and other elementary particles. The vortex compresses the surrounding spacetime fluid and induces inflow, providing natural geometric explanations for inertial mass, gravity, and time dilation. Fundamental parameters of the Standard Model—such as electric charge, spin, color charge, and generational structure—are reinterpreted as geometric and topological properties of vortex configurations, including winding number, knot structure, and phase topology. The photon‑resonance model encompasses the Standard Model as its low‑energy limit and predicts new resonant modes corresponding to higher winding numbers . This work proposes a unified physical picture in which matter, light, gravity, and time arise from a single fluid‑dynamical foundation, establishing a basis for future mathematical refinement and experimental verification.

Zenodo (CERN European Organization for Nuclear Research)
Relativity and Gravitational Theory
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