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February 26, 20260 citationsOpen Access

Topological Evolution of the Natural Constant e and the Structure Theory of Lepton Free Fields

JWJian Wen

Key Points

  • The central aim is to unify the mathematical-physical relationship between the constant e and lepton field structures.
  • Developed a topological theory linking e and lepton dynamics
  • Proposed four experimental paths for verification
  • Analyzed the behaviors of muons and tauons
  • Examined the lepton wave function's exponential form
  • Established that e defines an irreversible topological evolution of leptons
  • Demonstrated alignment with the exponential decay law of muons and tauons
  • Clarified the topological basis for lepton decay and non-confinement
  • Sustained compatibility with Quantum Electrodynamics and the Standard Model

Abstract

This paper establishes a unified topological theory between the natural constant e and the structure of lepton free fields, perfecting the mathematical-physical dual system of e and π. It provides a topological explanation for the structure and evolution of elementary particles, which is fully compatible with Quantum Electrodynamics (QED) and the Standard Model. The study reveals that e, as the core transcendental number describing continuous and self-driven evolutionary systems, corresponds to the open, non-compact, and irreversible topological evolution of leptons. In contrast, π corresponds to the closed, compact, and conserved topological structure of hadrons, forming the fundamental "change vs. non-change" duality in the universe. Four categories of experimentally testable paths are proposed, verifying the exponential decay law of muons and tauons, and the exponential form of the lepton wave function. This theory supplements the topological origin explanation for the existing Standard Model without modification, clarifying the topological root of lepton non-confinement and decay.

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Cite This Study

Jian Wen (2026) studied this question.

synapsesocial.com/papers/699fe3d995ddcd3a253e7cf3https://doi.org/10.5281/zenodo.18752695
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