Effects of Lorentz violation in the Higgs sector of the Minimal Standard Model Extension
arXiv:2205.06332 · doi:10.1142/S0217751X2250138X
Abstract
A bound on the CPT-odd four vector coefficient that appears in Higgs sector of the Minimal Standard Model Extended (MSME) is presented. The analysis is based on the contributions arising from the sector in question to the anomalous dipole moment for leptons calculated at the one loop level, for which an analytical expression is obtained. The largest contribution of this Lorentz violating coefficient is on the lightest lepton, which results as a consequence of a strong non-decoupling effect. By using the experimental uncertainty of the electron anomalous dipole moment we predict that GeV.
10 pages, 2 figures (minor changes)
References in corpus (8)
- Prospects for Beyond the Standard Model Physics Searches at the Deep Underground Neutrino Experiment
- Neutrino Oscillations and Lorentz Invariance Violation
- Covariant Quantization of CPT-violating Photons
- Probing Lorentz Invariance Violation with Atmospheric Neutrinos at INO-ICAL
- One-loop structure of the photon propagator in the Standard Model Extension
- Bounds on Lorentz-violating Yukawa couplings via lepton electromagnetic moments
- Non-minimal Lorentz invariance violation in light of muon anomalous magnetic moment and long-baseline neutrino oscillation data
- Lorentz violation in nucleon electromagnetic moments
Cited by in corpus (4)
- Impact of Lorentz violation on anomalous magnetic moments of charged leptons
- CPT-Odd effects on the electromagnetic properties of charged leptons in the Standard Model Extension
- Vacuum polarization in Yang-Mills theories with Lorentz violation
- Indications against dynamical CPT symmetry restoration in quantum gravity