TITLE:
Derivation of Schrödinger/Dirac Equation from the Framework of Tachyonic Magnetic Monopole Background Neutrinos
AUTHORS:
Eue-Jin Jeong
KEYWORDS:
Tachyonic Neutrinos, Magnetic Monopoles, Quantum Emergence, Schrödinger Equation, Dirac Equation, Stochastic Background
JOURNAL NAME:
Journal of High Energy Physics, Gravitation and Cosmology,
Vol.12 No.3,
July
22,
2026
ABSTRACT: This work proposes a novel framework in which quantum mechanical behavior emerges from interactions with a pervasive background of tachyonic magnetic monopole neutrinos. Motivated by recent experimental reports suggesting the existence of a magnetic monopole charge associated with neutrons, and invoking an extended principle of charge conservation that includes magnetic charge, we hypothesize that neutrinos carry an equivalent monopole charge and form a statistically isotropic cosmic background. Within this setting, we demonstrate that stochastic interactions between ordinary matter and this monopole-neutrino background naturally give rise to quantum dynamics. In particular, the cumulative effect of background-induced phase fluctuations leads, under appropriate coarse-graining, to the emergence of the Schrödinger and Dirac equations as effective dynamical laws rather than fundamental postulates. In this picture, Planck’s constant is interpreted as an emergent parameter determined by monopole charge, background density, and correlation structure. These results suggest that quantum mechanics may arise from deeper microscopic physics associated with a magnetically charged, tachyonic neutrino medium, providing a physically grounded alternative to the conventional axiomatic formulation.