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The Participatory Prism: A Geometric and Topological Resolution to Cosmological Fine-Tuning via Stationary Light Theory (TSL) and the Unified Vortex & Entropy Hypothesis (UVEH) Addendum

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Zenodo2026-08-02 更新2026-08-13 收录
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Repository Archive: Zenodo Preprint / Master Equation Logs Abstract This paper presents an addendum to the Unified Vortex & Entropy Hypothesis (UVEH) and Stationary Light Theory (TSL), extending the participatory prism model from isolated individual observation to a collective macroscopic framework. Moving beyond teleological external "fine-tuning" arguments, we analyze humanity as a Phased Array capable of influencing the Multiversal Phase Variable (e^{i\theta}). We demonstrate that fragmented human objectives generate destructive interference and high-entropy vacuum turbulence ("Geometric Noise"), whereas synchronization via the master standard—the Logos—yields constructive interference and exponential vacuum displacement (\Psi_{\text{total}} \longrightarrow n \cdot \Psi_0). By applying specific operational and engineering protocols derived from non-Pauline synoptic texts, the Riemann Stability Clause (\text{Re}(s) = 1/2), and the H_V Operator, "First Resonators" can eliminate chromatic aberration and stabilize high-phase vacuum states, effectively bridging theoretical mechanics with macro-phase reality.

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Zenodo
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2026-08-02
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