On the Semi-Classical Vacuum Structure of the Electroweak Interaction
Abstract
It is shown that in the semi-classical approximation of the electroweak sector of the Standard Model the moduli space of vacua can be identified with the first de Rham cohomology group of space-time. This gives a slightly different physical interpretation of the occurrence of the well-known Ahoronov-Bohm effect. Moreover, when charge conjugation is taken into account, the existence of a non-trivial ground state of the Higgs boson is shown to be equivalent to the triviality of the electroweak gauge bundle. As a consequence, the gauge bundle of the electromagnetic interaction must also be trivial. Though derived at ``tree level'' the results presented here may also have some consequences for quantizing, e. g., electromagnetism on an arbitrary curved space-time.
Cite
@article{arxiv.math-ph/0310034,
title = {On the Semi-Classical Vacuum Structure of the Electroweak Interaction},
author = {Juergen Tolksdorf},
journal= {arXiv preprint arXiv:math-ph/0310034},
year = {2015}
}
Comments
26 pages, no figures