On Maxwell’s Reversed Laws as Root of Magnetic Monopoles in Dark Matter

Author: Russell Bagdoo

Affiliation: Independent researcher, Canada

Email: rbagdoo@gmail.com

Journal: International Journal of Fundamental Physical Sciences (IJFPS)

Volume: 12, Issue: 3, Pages: 35-61

ISSN: 2231-8186

DOI: 10.14331/ijfps.2022.330154

Abstract

We propose the magnetic sterile neutrino as a possible candidate for dark matter. We bring the idea that dark matter would be made up of substances originating from black holes, in particular sterile neutrinos associated with a magnetic charge. These would not be sensitive only to the gravitational force. We conjectured that when baryonic matter crosses the black hole's event horizon, Maxwell's laws are reversed and electric charge becomes magnetic charge. This would result in the generation and emission of sterile magnetic neutrinos, true magnetic monopoles. We also examine interactions with ordinary neutrinos, the possibility of gamma-ray production, and implications for galaxy formation and cosmic radiation. The paper proposes a magnetoelectric perspective and posits the existence of 'dark photons' mediated by magnetic charges, contributing to a deeper understanding of dark matter's origin and structure.

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License: https://creativecommons.org/licenses/by-nc/4.0/