Skyrmion Hall effect in altermagnets

Fuente: arXiv
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Autori principali: Jin, Zhejunyu, Zeng, Zhaozhuo, Cao, Yunshan, Yan, Peng
Natura: Preprint
Pubblicazione: 2024
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author Jin, Zhejunyu
Zeng, Zhaozhuo
Cao, Yunshan
Yan, Peng
author_facet Jin, Zhejunyu
Zeng, Zhaozhuo
Cao, Yunshan
Yan, Peng
contents It is widely believed that the skyrmion Hall effect is absent in antiferromagnets because of the vanishing topological charge. However, the Aharonov-Casher theory indicates the possibility of topological effects for neutral particles. In this work, we predict the skyrmion Hall effect in emerging altermagnets with zero net magnetization and zero skyrmion charge. We first show that the neutral skyrmion manifests as a magnetic quadrupole in altermagnets. We reveal a hidden gauge field from the magnetic quadrupole, which induces the skyrmion Hall effect when driven by spin transfer torque. Interestingly, we identify a sign change of the Hall angle when one swaps the anisotropic exchange couplings in altermagnets. Furthermore, we demonstrate that both the velocity and Hall angle of altermagnetic skyrmions sensitively depend on the current direction. Our findings real the critical role of magnetic quadrupole in driving the skyrmion Hall effect with vanishing charge, and pave the way to discovering new Hall effect of neutral quasiparticles beyond magnetic skyrmions.
format Preprint
id arxiv_https___arxiv_org_abs_2407_03959
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Skyrmion Hall effect in altermagnets
Jin, Zhejunyu
Zeng, Zhaozhuo
Cao, Yunshan
Yan, Peng
Materials Science
It is widely believed that the skyrmion Hall effect is absent in antiferromagnets because of the vanishing topological charge. However, the Aharonov-Casher theory indicates the possibility of topological effects for neutral particles. In this work, we predict the skyrmion Hall effect in emerging altermagnets with zero net magnetization and zero skyrmion charge. We first show that the neutral skyrmion manifests as a magnetic quadrupole in altermagnets. We reveal a hidden gauge field from the magnetic quadrupole, which induces the skyrmion Hall effect when driven by spin transfer torque. Interestingly, we identify a sign change of the Hall angle when one swaps the anisotropic exchange couplings in altermagnets. Furthermore, we demonstrate that both the velocity and Hall angle of altermagnetic skyrmions sensitively depend on the current direction. Our findings real the critical role of magnetic quadrupole in driving the skyrmion Hall effect with vanishing charge, and pave the way to discovering new Hall effect of neutral quasiparticles beyond magnetic skyrmions.
title Skyrmion Hall effect in altermagnets
topic Materials Science
url https://arxiv.org/abs/2407.03959