Randomized trial investigates electron structure and dynamics, suggesting a new model for core properties.
Current theories often attribute the core physical properties of electrons to unexplainable "Eigen attributes," avoiding their true physical structure and dynamic mechanisms, making it difficult to resolve certain foundational theoretical paradoxes self-consistently. Based on electromagnetic waves and standing wave physics, this paper proposes an electron structure model centered on the 8-shaped electromagnetic standing wave topological structure as the carrier and Eigen drift motion as the core driver. The formation and Eigen drift motion of this model serve as the origin of all core physical properties of electrons. In the absence of external fields, it externally exhibits spherical symmetry, uniform electrical properties, and no magnetism. Under external fields, the Eigen drift of the standing wave cluster becomes constrained and directionally distorted, simultaneously revealing a magnetic axis, magnetic moment, and electrical non-uniformity. This model, within a minimalist electromagnetic framework, unifies explanations for the electron's negative charge, 1/2 spin, and other core properties, resolves related theoretical paradoxes, and proposes multiple typical and feasible experimental predictions. It provides a clear path for future experimental exploration of the electron's microscopic spatial structure and Eigen motion mechanisms, establishing a concrete, self-consistent foundational physical system for electrons.
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zhaole sun (2025) studied this question.
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