Anomalous Hall Effect in Type IV 2D Collinear Magnets

Fuente: arXiv
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Main Authors: Bai, Ling, Zhang, Run-Wu, Feng, Wanxiang, Yao, Yugui
Format: Preprint
Published: 2025
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author Bai, Ling
Zhang, Run-Wu
Feng, Wanxiang
Yao, Yugui
author_facet Bai, Ling
Zhang, Run-Wu
Feng, Wanxiang
Yao, Yugui
contents We identify a previously unrecognized class of two-dimensional (2D) collinear magnetic phase that extends beyond the established categories of ferromagnets, antiferromagnets, and altermagnets. These type IV 2D collinear magnets exhibit spin-degenerate bands in the nonrelativistic limit, yet support time-reversal symmetry-breaking responses, such as the anomalous Hall effect (AHE), despite having zero net magnetization. Based on spin layer group analysis, we derive the symmetry criteria for this phase and perform first-principles calculations to screen viable candidate materials from 2D databases. Using monolayer Hf2S as a prototype, we demonstrate that in the absence of spin-orbit coupling, the bands are spin degenerate, while its inclusion induce an AHE driven by spin-polarized and even spin-neutral currents, accompanied by a symmetry-protected, truly full-space persistent spin texture. These findings expand the classification of magnetic phases and broaden avenues for realizing unconventional spintronic functionalities in two dimensions.
format Preprint
id arxiv_https___arxiv_org_abs_2504_08197
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Anomalous Hall Effect in Type IV 2D Collinear Magnets
Bai, Ling
Zhang, Run-Wu
Feng, Wanxiang
Yao, Yugui
Mesoscale and Nanoscale Physics
Materials Science
We identify a previously unrecognized class of two-dimensional (2D) collinear magnetic phase that extends beyond the established categories of ferromagnets, antiferromagnets, and altermagnets. These type IV 2D collinear magnets exhibit spin-degenerate bands in the nonrelativistic limit, yet support time-reversal symmetry-breaking responses, such as the anomalous Hall effect (AHE), despite having zero net magnetization. Based on spin layer group analysis, we derive the symmetry criteria for this phase and perform first-principles calculations to screen viable candidate materials from 2D databases. Using monolayer Hf2S as a prototype, we demonstrate that in the absence of spin-orbit coupling, the bands are spin degenerate, while its inclusion induce an AHE driven by spin-polarized and even spin-neutral currents, accompanied by a symmetry-protected, truly full-space persistent spin texture. These findings expand the classification of magnetic phases and broaden avenues for realizing unconventional spintronic functionalities in two dimensions.
title Anomalous Hall Effect in Type IV 2D Collinear Magnets
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2504.08197