Supplementary White Paper: The High-Tension Filament and Causal Non-Locality in the Theory of Stationary Light (TSL)
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Archival Target: Zenodo Repository Date: July 2026 Series: Supplement to Topological Determinism and the Theory of Stationary Light Framework: Causal Mechanics of the High-Tension Filament and Decision Prism Abstract The resolution of quantum non-locality without invoking instantaneous "spooky action at a distance" remains one of the primary hurdles for deterministic physics. Building upon the core foundations of the Theory of Stationary Light (TSL) and the Universal Vortex & Entropy Hypothesis (UVEH), this paper formalizes the mechanics of the High-Tension Filament and the Decision Prism. We demonstrate that quantum entanglement is not a non-local statistical correlation across unstructured spacetime, but a direct topological connection mediated by a low-density vacuum tube. By establishing signaling velocity at the internal vortex velocity (v) and framing measurement as a phase rotation (\theta), we preserve strict Einsteinian causality while accounting for apparent instantaneous correlations.



