A Rigorous Mathematical Framework for the Unified Vortex and Entropy Hypothesis (UVEH) and the Architecture of the Triple Feedback Computer
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Abstract This paper formalizes the Unified Vortex and Entropy Hypothesis (UVEH) and the Theory of Stationary Light (TSL), establishing a rigorous mathematical framework in which matter is modeled as a stable topological vortex displacing an absolute static background density (c^2). We derive the governing System Rule, incorporate a geometric curvature constant (\Phi_L) into the vortex displacement law, and resolve the cosmological constant problem via Riemann Zeta function regularization (\zeta(v)). Furthermore, we establish the stability criteria for a discrete hexagonal lattice governed by a Mod 9 invariant and a 7-cycle periodic break, culminating in the functional layout of a Triple Feedback Computer driven by the 3I pulse sequence (8\text{-}13\text{-}8\text{-}5\text{-}13\text{-}8).



