Renormalizability of Yang-Mills theory with Lorentz violation and gluon mass generation
Abstract
We show that pure Yang-Mills theories with Lorentz violation are renormalizable to all orders in perturbation theory. To do this, we employ the algebraic renormalization technique. Specifically, we control the breaking terms with a suitable set of external sources which, eventually, attain certain physical values. The Abelian case is also analyzed as a starting point. The main result is that the renormalizability of the usual Maxwell and Yang-Mills sectores are both left unchanged. Furthermore, in contrast to Lorentz violating QED, the odd CPT violation sector of Yang-Mills theories renormalizes independently. Moreover, the method induces, in a natural way, mass terms for the gauge field while the photon remains massless (at least n the sense of a Proca-like term). The entire analysis is carried out at the Landau gauge.
Keywords
Cite
@article{arxiv.1404.4846,
title = {Renormalizability of Yang-Mills theory with Lorentz violation and gluon mass generation},
author = {T. R. S. Santos and R. F. Sobreiro},
journal= {arXiv preprint arXiv:1404.4846},
year = {2015}
}
Comments
20 pages. No figures. To appear at the PRD