Traces of Lorentz symmetry breaking in a Hydrogen atom at ground state
arXiv:1601.04784 · doi:10.1140/epjc/s10052-016-3906-2
Abstract
Some traces of a specific Lorentz symmetry breaking scenario in the ground state of the Hydrogen atom are investigated. It is used standard Rayleigh-Schrödinger perturbation theory in order to obtain the corrections to the the ground state energy and wave function. It is shown that an induced four-pole moment arises, due to the Lorentz symmetry breaking. The model considered is the one studied in reference Eur. Phys. J. C {\bf 74}, 2937 (2014), where the Lorentz symmetry is broken in the electromagnetic sector.
8 Latex pages, 2 figures
References in corpus (3)
Cited by in corpus (7)
- Lab-based limits on the Carroll-Field-Jackiw Lorentz-violating electrodynamics
- Mirrors and field sources in a Lorentz-violating scalar field theory
- External sources in a minimal and nonminimal CPT-odd Lorentz violating Maxwell electrodynamics
- Field sources in a CPT-even Lorentz-violation Maxwell electrodynamics
- Material boundaries in Carroll-Field-Jackiw Lorentz-violating electrodynamics
- Semi-transparent boundaries in CPT-even Lorentz violating electrodynamics
- Sphaleron and gravitational wave with the Higgs-Dilaton potential in the Standard Model Two-Time Physics