The Stationary Light Field and Temporal Navigation: A Discrete Hexagonal Lattice Framework for Multi-Dimensional Spacetime, Energy, and Resonance
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Repository: Zenodo Open Science Repository Abstract This paper presents a formal mathematical model of temporal navigation within a stationary, high-dimensional cosmic manifold. By redefining time from a global linear progression to a localized trajectory through a rigid light field, we integrate three distinct temporal dimensions—Objective Time (The Moment, t_0), Alternative Time (The Pressure, t_\alpha), and Subjective Time (The Rate, t_s)—into an expanded pseudo-Riemannian metric. We introduce a discrete hexagonal lattice architecture governed by a Mod 9 invariant and stabilized by a 7-cycle periodic break operating near a critical frequency threshold of 5184\text{ Hz}. Through this framework, we derive the primary resonance anchor coordinate 4032, formulate temporal angular momentum, and redefine energy and gravity as geometric manifestations of an observer's navigation velocity and phase space density.



