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April 5, 20260 citationsOpen Access

Structure of Subatomic Particles from a Heuristic Point of View

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YCYuriy Chekrygin

Key Points

  • The aim is to develop a model explaining the internal structure of nucleons and the muon without quarks or quantum theories.
  • Created a hypothetical model based on classical physics principles.
  • Analyzed decay channels of kaons, pions, and nucleons.
  • Investigated rest masses of electrons, nucleons, pions, and muons to inform the model.
  • Developed mechanistic models for muon, proton, and neutron based on mass analysis.
  • Explained differences in proton and neutron properties regarding their anomalous magnetic moments.
  • Proposed the existence of a dense charge-preserved state of matter.

Abstract

A hypothetical model of the internal structure of nucleons, and the muon as a composite particle inside nucleons has been created. The muon mass served as the starting point for the creation of the nucleon model based on the principles of classical physics without using the idea of quarks and quantum chromodynamics. The author conducted a detailed analysis of the decay channels of kaons, pions and nucleons, which allowed him to draw a conclusion about their possible composition and geometry based on the numerical characteristics of their masses. Result: based on the analysis of the well-known rest masses of electrons, nucleons, pions and muons, mechanistic models of the muon, proton and neutron were created, explaining the difference in their properties and behavior in strong interactions from a heuristic point of view. The difference in the internal structure of a proton and a neutron explains the ratio of their experimentally established anomalous magnetic moments. Besides this the spatial structure of the muon provides an explanation for its anomalous magnetic moment. IMPORTANT! The idea of the existence of a bound state of elementary charges - dense charge-preserved state (DCPS) of matter or time-stop encapsulation (TSE) - was put forward.

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Cite This Study

Yuriy Chekrygin (2026) studied this question.

synapsesocial.com/papers/69d1fd8ea79560c99a0a3a15https://doi.org/10.5281/zenodo.19128809
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