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From the Higgs Field to the Graviton: A Reformulation of Quantum Gravity under the Kemet Gravity Theory

Record type:

paper
Creator:
Fuertes Oliva, MartínSanBarBue
Publisher:
Zenodo
Host:avatar
This article presents a reformulation of gravitational theory within the frameworkof the Kemet Gravity Theory (KGT), where gravity is not a fundamental inter-action but an emergent effect derived from the Higgs field. The gravitational fieldϕg(x) is defined as a functional derivative of the Higgs field with respect to mass, andthe graviton κg(x) is reinterpreted as a kemta—a discrete excitation of gravitationaltension. A corrected speed of light c′(x) emerges from the field coupling, modify-ing energy relations and gravitational time dilation in a flat spacetime background.The model reproduces known predictions from General Relativity (GR) such as lightdeflection, perihelion precession, and redshift, but introduces new testable features,including spectral palindromes in gravitational waves and an emergent cosmologicalexpansion sourced by Higgs field dynamics. We provide numerical simulations and adetailed empirical comparison with current observational data, showing that KGT iscompatible with all known tests of gravity while offering novel insights at high energiesand cosmological scales. Philosophically, KGT promotes a pluriversal and decolonialview of physics, rooted in Kemetic metaphysics and linguistic justice.