Relativistic Landau-Aharonov-Casher quantization based on the Lorentz symmetry violation background
K. Bakke, H. Belich, E. O. Silva

TL;DR
This paper explores how Lorentz symmetry violation backgrounds can induce a relativistic Landau-Aharonov-Casher quantization, extending the understanding of quantum effects in non-standard spacetime symmetries.
Contribution
It demonstrates the possibility of relativistic Landau quantization in the Aharonov-Casher setup within Lorentz-symmetry violation backgrounds, a novel theoretical insight.
Findings
Relativistic Landau-Aharonov-Casher quantization can be realized in Lorentz-violating backgrounds.
The study links Lorentz symmetry violation to quantum phase effects.
New theoretical framework for quantum phenomena in non-standard spacetime symmetries.
Abstract
Based on the discussions about the Aharonov-Casher effect in the Lorentz symmetry violation background, we show that the analogue of the relativistic Landau quantization in the Aharonov-Casher setup can be achieved in the Lorentz-symmetry violation background.
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