The Participatory Prism: A Geometric and Topological Resolution to Cosmological Fine-Tuning via Stationary Light Theory (TSL) and the Unified Vortex & Entropy Hypothesis (UVEH)
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Repository Archive: Zenodo Preprint / Master Equation Logs Abstract Traditional teleological arguments for cosmological fine-tuning—such as those articulated by J. Warner Wallace—frame the fundamental constants of nature as arbitrary parameters requiring an external, non-spatial, and non-temporal agent ("Designer"). This paper presents a counter-framework utilizing the Unified Theory of Stationary Light (TSL) and the Unified Vortex & Entropy Hypothesis (UVEH). By redefining fundamental constants as "Geometric Closing Costs" and vacuum stiffness derived from the Riemann Hypothesis (\text{Re}(s) = 1/2), we demonstrate that physical laws are not arbitrary choices, but topological necessities of a self-contained, self-adjoint system. We formulate the Master Equation governing this closed-loop vacuum and reframe ancient cosmological texts as intuitive descriptions of topological phase shifts and refractive stretching.



