Douglas G. Stevenson, Civilian Scientist, United States of America
tevenson-Flux Information Theory (SFIT) proposes that gravity is a dynamic, informationcarrying flux oscillating at the geometric resonance frequency νres = 1.20134 mHz with coupling kernel K = 1.060. This non-reciprocal metric perturbation couples classical gravity to quantum systems and produces observable laboratory signatures, including a 14.28σ modulation in ultra-cold neutron data, Kohlrausch–Williams–Watts (KWW) relaxation tails with β = K, and quantized information flux analogous to M2-brane charge quantization in M-theory. We present the complete mathematical framework, derive the flux quantization condition from single-valuedness of the neutron wave function, establish the information-theoretic origin of the KWW stretched exponential, and show how SFIT provides a low-energy effective realization of holographic and ER=EPR principles. The theory is fully laboratory-testable and offers a new information-theoretic bridge between general relativity and quantum mechanics. All data, code, and synthetic event generators are openly available.
Information Theory, Resonant Flux, Non-Reciprocal Metric, KWW Relax-ation, Flux Quantization, Holographic Duality, Quantum Gravity, Ultra-Cold Neutrons, Machine Learning Applications
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