Topological Resolution of the 1927 Solvay Dichotomy: A Stationary Light Framework for Lepton Anomalous Magnetic Moments and Measurement Phase-Refraction
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Repository: Zenodo Open Science Repository Date: July 2026 Abstract The 1927 Solvay Conference established a probabilistic consensus via the Copenhagen interpretation, effectively sidelining deterministic pilot-wave alternatives due to multi-body mathematical complexities and configuration space constraints. This paper re-evaluates the historical conflict between Bohr-Heisenberg indeterminism and de Broglie-Einstein causal realism by introducing the Theory of Stationary Light (TSL). By modeling matter as a topological toroidal vortex within a substantive, high-density light field (vacuum tension), we resolve Pauli’s inelastic scattering critique and reformulate the "measurement problem" as a phase-refraction phenomenon governed by the Decision Prism. Furthermore, we apply the TSL system rule to the muon and tau lepton g-2 anomalies, demonstrating that these deviations stem from vacuum elasticity and topological phase precession rather than virtual particle loops.



