The Unified Theory of Stationary Light (TSL): A Topological Reconciliation of Elemental Periodicity, Mineralogical Geometry, and Quantum Anomalies
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Repository: Zenodo Preprints Date: August 2026 Abstract Standard physical models often rely on statistical probabilities and unverified constants to describe fundamental anomalies such as the proton radius puzzle, wave-particle duality, the origin of Planck's constant, and radioactive decay. This paper formalizes the Unified Theory of Stationary Light (TSL), presenting a deterministic topological framework where matter is redefined as a "Stationary Light Trap" within a stiff vacuum field. By establishing the algebraic bridge 2\pi m_0 v^2 r = -c^2, TSL successfully derives particle radii, explains elemental stability gaps (Technetium, Promethium), resolves the origin of quantum quantization (h), and unifies atomic periodicity with mineral crystal lattices through Multiversal Phase Variables (\theta).



