We prove that standard electromagnetism precisely originates from local spacetime geometrodynamics, without postulating gauge invariance, in a way that is complementary and unified with respect to ordinary gravitational geometrodynamics. According to the Hamilton–Jacobi optomechanical analogy ("phase harmony"), interactions admit a dual reading: dynamically, as local changes of four-momentum; geometrically, as local modulations of spacetime recurrences. Spacetime curvature induces redshift and ruler deformation, resulting in gravitational interaction. In parallel, position-dependent local isometries, implemented as Fermi–Walker transport of tetrads, induce precession in particle’s dynamics. The corresponding abelian holonomy defines a U (1) connection and yields electromagnetism, with the Lorentz force appearing as a Coriolis-like effect. This construction also introduces an S¹ fiber attached to every spacetime point and thus the Maxwell kinetic term from a purely 4D reinterpretation of the Kaluza-Klein mechanism. Electromagnetic effects, such as Larmor/Thomas precession, Zeeman effect, synchrotron radiation, gravitomagnetism, are consistently described within this geometrodynamical scheme.
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Dolce, Donatello (Wed,) studied this question.
synapsesocial.com/papers/6924fee0c0ce034ddc35139b — DOI: https://doi.org/10.5281/zenodo.17648202
Dolce, Donatello
Università di Camerino
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