On the influence of a Rashba-type coupling induced by Lorentz-violating effects on a Landau system for a neutral particle
arXiv:1412.5078 · doi:10.1016/j.aop.2014.12.006
Abstract
We study a possible scenario of the Lorentz symmetry violation background that allows us to build an analogue of the Landau system for a nonrelativistic Dirac neutral particle interacting with a field configuration of crossed electric and magnetic fields. We also discuss the arising of analogues of the Rashba coupling, the Zeeman term and the Darwin term from the Lorentz symmetry breaking effects, and the influence of these terms on the analogue of the Landau system confined to a two-dimensional quantum ring. Finally, we show that this analogy with the Landau system confined to a two-dimensional quantum ring allows us to establish an upper bound for the Lorentz symmetry breaking parameters.
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- Stability of Effective Thin-shell Wormholes Under Lorentz Symmetry Breaking Supported by Dark Matter and Dark Energy
- Thermodynamics of a quantum ring modified by Lorentz violation
- Effects of Lorentz Symmetry Violation on a Relativistic Scalar Particle in Quantum Systems
- Effects of Lorentz Symmetry Breaking Environment on Generalized Relativistic Quantum Oscillator Field