具有非共线自旋的NiSi和反铁磁候选材料中的电磁学

Deepak K. Singh, Sang-Wook Cheong, Jiasen Guo
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引用次数: 0

摘要

最近,人们提出了一类新的磁现象,称为altermagnetic,其中潜在的自旋构型类似于反铁磁结构,但由于磁性离子之间晶体对称性的交替,该系统违反了PT (PT:宇称乘以时间反转)对称性。虽然最初的想法是针对共线自旋结构提出的,但Cheong等人最近的一份报告表明,具有非共线自旋结构和晶体排列局部交替的反铁磁材料也可以表现为互磁。除了破坏PT对称外,交替磁化合物还可能表现出奇阶的反常霍尔效应。这里讨论了这方面可能的候选人。单硅化镍就是一个例子,它最近被证明具有非共线自旋结构的高温反铁磁性。它既满足PT对称性的破缺,又表现出非线性异常霍尔效应。除了NiSi外,还讨论了其他具有非共线自旋组态的潜在反铁磁材料,用于探索交变磁态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Altermagnetism in NiSi and Antiferromagnetic Candidate Materials with Non-Collinear Spins

Altermagnetism in NiSi and Antiferromagnetic Candidate Materials with Non-Collinear Spins

Recently, a new class of magnetic phenomenon, called altermagnetism, is proposed where the underlying spin configuration resembles antiferromagnetic structure, but the system violates PT (PT: Parity times Time reversal) symmetry due to the alternation of crystalline symmetry across magnetic ions. Although the original idea is proposed for the collinear spin structure, a recent report by Cheong et al. has suggested that antiferromagnetic materials with non-collinear spin structure and local alternation of crystalline arrangement can also manifest altermagnetism. Besides breaking the PT symmetry, altermagnetic compounds are also expected to exhibit anomalous Hall effects of odd orders. Here, possible candidates are discussed in this regard. One example is nickel monosilicide, which is recently shown to exhibit high temperature antiferromagnetism with non-collinear spin structure. It fulfills both criteria of breaking the PT symmetry and manifesting nonlinear anomalous Hall effect. In addition to NiSi, other potential antiferromagnetic materials are also discussed with non-collinear spin configuration for the exploration of altermagnetic states.

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