Generation of dc, ac, and second-harmonic spin currents by electromagnetic fields in an inversion-asymmetric antiferromagnet
Abstract
Manipulating spin currents in magnetic insulators is a key technology in spintronics. We theoretically study a simple inversion-asymmetric model of quantum antiferromagnets, where both the exchange interaction and the magnetic field are staggered. We calculate spin currents generated by external electric and magnetic fields by using a quantum master equation. We show that an ac electric field with amplitude leads, through exchange-interaction modulation, to the dc and second-harmonic spin currents proportional to . We also show that dc and ac staggered magnetic fields generate the dc and ac spin currents proportional to , respectively. We elucidate the mechanism by an exactly solvable model, and thereby propose the ways of spin current manipulation by electromagnetic fields.
Keywords
Cite
@article{arxiv.1912.03797,
title = {Generation of dc, ac, and second-harmonic spin currents by electromagnetic fields in an inversion-asymmetric antiferromagnet},
author = {Tatsuhiko N. Ikeda},
journal= {arXiv preprint arXiv:1912.03797},
year = {2019}
}
Comments
8 pages, 6 figures