Quantum Effects on Higgs Winding Configurations
Abstract
We examine the quantum corrections to the static energy for Higgs winding configurations. We evaluate the effective action for such configurations in Weinberg-Salam theory without U(1)-gauge fields or fermions. For a configuration whose size is much smaller than the inverse W-mass, quantum contributions to the energy are comparable to the classical energy. Moreover, it is insufficient to consider only one-loop corrections, even as hbar --> 0. Indeed, all loop orders contribute equally to the static energy. Nevertheless, quantum fluctuations do not stabilize winding configurations.
Cite
@article{arxiv.hep-ph/9710332,
title = {Quantum Effects on Higgs Winding Configurations},
author = {Arthur Lue},
journal= {arXiv preprint arXiv:hep-ph/9710332},
year = {2007}
}
Comments
6 pages REVTEX, no figures. To be published in the proceedings of A CRM-Fields-CAP Summer Workshop in Theoretical Physics: Solitons, Properties, Dynamics, Interactions and Applications, Kingston, Ontario, Canada, 20-26 Jul 1997