Spin-Orbit Coupling-Driven Chirality Switching of Spin Waves in Altermagnets

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Li, Wen-Tong, Wu, Yu-Biao, Zhuang, Lin, Wang, Jian-Tao, Liu, Wu-Ming
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911235924033536
author Li, Wen-Tong
Wu, Yu-Biao
Zhuang, Lin
Wang, Jian-Tao
Liu, Wu-Ming
author_facet Li, Wen-Tong
Wu, Yu-Biao
Zhuang, Lin
Wang, Jian-Tao
Liu, Wu-Ming
contents Altermagnets host intrinsically chirality-splitting spin waves, which offer an ideal platform for chirality-based computing with low energy consumption and fast dynamics. However, achieving precise and efficient control over spin-wave chirality remains a challenge. Here, we propose a mechanism to switch the chirality of spin waves in altermagnets via electrically induced Rashba spin-orbit coupling (SOC), which is free of tuning external fields. For in-plane spin polarization, SOC introduces a splitting effect opposite to the altermagnetism, leading to spin inversion in the electronic energy bands and chirality reversal in the spin-wave dispersion. By tuning SOC strength, the chirality splitting of spin waves can be controllably modified, enabling chirality switching at fixed resonance conditions, which results in the reversal of transverse spin susceptibility. We further design an experimental setup based on an altermagnet/antiferromagnet heterostructure to realize this mechanism. Our work establish a pathway toward efficient electrical control of spin-wave chirality in altermagnets, facilitating the development of chirality-based spintronic devices.
format Preprint
id arxiv_https___arxiv_org_abs_2508_18585
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spin-Orbit Coupling-Driven Chirality Switching of Spin Waves in Altermagnets
Li, Wen-Tong
Wu, Yu-Biao
Zhuang, Lin
Wang, Jian-Tao
Liu, Wu-Ming
Mesoscale and Nanoscale Physics
Altermagnets host intrinsically chirality-splitting spin waves, which offer an ideal platform for chirality-based computing with low energy consumption and fast dynamics. However, achieving precise and efficient control over spin-wave chirality remains a challenge. Here, we propose a mechanism to switch the chirality of spin waves in altermagnets via electrically induced Rashba spin-orbit coupling (SOC), which is free of tuning external fields. For in-plane spin polarization, SOC introduces a splitting effect opposite to the altermagnetism, leading to spin inversion in the electronic energy bands and chirality reversal in the spin-wave dispersion. By tuning SOC strength, the chirality splitting of spin waves can be controllably modified, enabling chirality switching at fixed resonance conditions, which results in the reversal of transverse spin susceptibility. We further design an experimental setup based on an altermagnet/antiferromagnet heterostructure to realize this mechanism. Our work establish a pathway toward efficient electrical control of spin-wave chirality in altermagnets, facilitating the development of chirality-based spintronic devices.
title Spin-Orbit Coupling-Driven Chirality Switching of Spin Waves in Altermagnets
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2508.18585