Short-scale quantum kinetic theory including spin-orbit interactions
Abstract
We present a quantum kinetic theory for spin- particles, including the spin-orbit interaction, retaining particle dispersive effects to all orders in , based on a gauge-invariant Wigner transformation. Compared to previous works, the spin-orbit interaction leads to a new term in the kinetic equation, containing both the electric and magnetic fields. Like other models with spin-orbit interactions, our model features "hidden momentum". As an example application, we calculate the dispersion relation for linear electrostatic waves in a magnetized plasma, and electromagnetic waves in a unmagnetized plasma. In the former case, we compare the Landau damping due to spin-orbit interactions to that due to the free current. We also discuss our model in relation to previously published works.
Cite
@article{arxiv.1908.05131,
title = {Short-scale quantum kinetic theory including spin-orbit interactions},
author = {Robin Ekman and Haidar Al-Naseri and Jens Zamanian and Gert Brodin},
journal= {arXiv preprint arXiv:1908.05131},
year = {2023}
}
Comments
13 pages, 1 figure