Rigorous Mathematical and Conceptual Framework of the Theory of Stationary Light (TSL): Reconciling Quantum Postulates via Vacuum Geometries
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Repository / Metadata Reference: Zenodo Open Science Framework Abstract Conventional subatomic physics relies heavily on the probabilistic postulates of the Copenhagen Interpretation and abstract wave mechanics. While empirically robust, these frameworks leave fundamental concepts—such as wavefunction collapse, the origin of Planck’s constant, and non-local entanglement—unexplained on an ontological level. In this paper, we formalize the Theory of Stationary Light (TSL), transitioning the foundational paradigm from probabilistic approximations to a deterministic, geometric framework of vacuum tension. By reinterpreting particles as topological vortices (geometric sinks) within a static light field, we derive key physical constants from first principles, resolve the measurement problem through vacuum fluid dynamics, and provide a mathematical description of systemic dissolution.



