English

Gluonic Lorentz violation and chiral perturbation theory

High Energy Physics - Phenomenology 2017-05-03 v1 Nuclear Theory

Abstract

By applying chiral-perturbation-theory methods to the QCD sector of the Lorentz-violating Standard-Model Extension, we investigate Lorentz violation in the strong interactions. In particular, we consider the CPT-even pure-gluon operator of the minimal Standard-Model Extension. We construct the lowest-order chiral effective Lagrangian for three as well as two light quark flavors. We develop the power-counting rules and construct the heavy-baryon chiral-perturbation-theory Lagrangian, which we use to calculate Lorentz-violating contributions to the nucleon self energy. Using the constructed effective operators, we derive the first stringent limits on many of the components of the relevant Lorentz-violating parameter. We also obtain the Lorentz-violating nucleon-nucleon potential. We suggest that this potential may be used to obtain new limits from atomic-clock or deuteron storage-ring experiments.

Keywords

Cite

@article{arxiv.1701.04334,
  title  = {Gluonic Lorentz violation and chiral perturbation theory},
  author = {J. P. Noordmans},
  journal= {arXiv preprint arXiv:1701.04334},
  year   = {2017}
}

Comments

20 pages, 1 figure