The Chern-Simons Coefficient in Supersymmetric Yang-Mills Chern-Simons Theories
Abstract
We study one-loop correction to the Chern-Simons coefficient in supersymmetric Yang-Mills Chern-Simons systems. In the pure bosonic case, the shift of the parameter is known to be , where is the quadratic Casimir of the gauge group. In the case, the fermionic contribution cancels the bosonic contribution by half and the shift is , making the theory anomalous if is odd. In the cases, the fermionic contribution cancels the bosonic contribution completely and there is no correction. We also calculate the mass corrections, showing the supersymmetry is preserved. As the matter fields decouple from the gauge field in the pure Chern-Simons limit, this work sheds some light on the regularization dependency of the correction in pure Chern-Simons systems. We also discuss the implication to the case when the gauge symmetry is spontaneously broken by the Higgs mechanism.
Keywords
Cite
@article{arxiv.hep-th/9506170,
title = {The Chern-Simons Coefficient in Supersymmetric Yang-Mills Chern-Simons Theories},
author = {Hsien-Chung Kao and Kimyeong Lee and Taejin Lee},
journal= {arXiv preprint arXiv:hep-th/9506170},
year = {2017}
}
Comments
10 pages, tex with phyzzx macro, no figures