Discrete symmetries and quantum number conservation
General Physics
2025-03-04 v9
Abstract
The algebraic formulation of discrete and space-time symmetries is related to fermion quantum numbers defined by a sub-algebra of the Clifford Unification algebra. Fermion decays and interactions have been shown to conserve all seven binary quantum numbers defined by . The previously formulated {\it Conservation Law} is modified to include the effects of employing distinct F,G quantum numbers in descriptions of fermions with C=+1 and C=. This is relevant in interpreting the results of high energy experiments.
Cite
@article{arxiv.2211.15473,
title = {Discrete symmetries and quantum number conservation},
author = {Douglas Newman},
journal= {arXiv preprint arXiv:2211.15473},
year = {2025}
}
Comments
7 pages. The labels 6, 7, 8 of the gamma matrices have been replaced by a, b, c respectively. The references to the PMNS matrix have been removed