English

CPT and Lorentz violation en the Photon and $Z$-boson sector

High Energy Physics - Phenomenology 2017-11-13 v1

Abstract

CPT and Lorentz violation in the photon sector is described within the minimal Standard-Model Extension by a dimension-3 Chern-Simons-like operator parametrized by a four-vector parameter kAFk_{AF} that has been very tightly bounded by astrophysical observations. On the other hand, in the context of the SU(2)×U(1)SU(2)\times U(1) electroweak gauge sector of the Standard-Model Extension, CPT and Lorentz violation is described similarly, by dimension-3 operators parametrized by four-vector parameters k1k_1 and k2k_2. In this work, we investigate in detail the effects of the resulting CPT and Lorentz violation in the photon and ZZ-boson sectors upon electroweak-symmetry breaking. In particular, we show that for the photon sector the relevant Lorentz-violating effects are described at lowest order by the kAFk_{AF} term, but that there are higher-order momentum-dependent effects due to photon-ZZ boson mixing. As bounds on CPT and Lorentz violation in the ZZ sector are relatively weak, these effects could be important phenomenologically. We investigate these effects in detail in this work.

Keywords

Cite

@article{arxiv.1711.03921,
  title  = {CPT and Lorentz violation en the Photon and $Z$-boson sector},
  author = {D. Colladay and J. P. Noordmans and R. Potting},
  journal= {arXiv preprint arXiv:1711.03921},
  year   = {2017}
}

Comments

20 pages, 3 figures