论文标题

新兴的研究景观

Emerging research landscape of altermagnetism

论文作者

Šmejkal, Libor, Sinova, Jairo, Jungwirth, Tomas

论文摘要

磁性是最大,最基本和技术上最相关的凝结物理学领域之一。传统上,考虑了两个基本的磁相 - 铁磁和反铁磁性。在这种广泛探索和利用的磁体类型中,通过铁磁体中的磁化为基础的磁化磁化强度的磁化破坏了电子状态的旋转分裂。相比之下,抗铁磁铁的净磁力消失。这种观点反映了对托管材料的最新观察结果,该材料具有有趣的铁磁 - 抗铁磁二分法,其中与抗磁力磁化强度伴随着抗抗磁力的抗磁性磁化,旋转分裂的光谱和类似于铁磁体的旋转分裂光谱和宏观可观察结果伴随着抗铁磁性的抗抗铁磁性。一种非常规的非权威对称性对称形式形式主义通过划定了第三个基本磁相(称为altermagnetism),从而解决了这种明显的矛盾。我们的观点始于概述该阶段的独特现象学以及广泛的Altermagnetic材料候选者。在本文的主要部分中,我们说明了Altermagnetism如何丰富我们对总体凝结物理学概念的理解,并对突出的凝结凝结研究领域产生影响。

Magnetism is one of the largest, most fundamental, and technologically most relevant fields of condensed-matter physics. Traditionally, two basic magnetic phases have been considered -- ferromagnetism and antiferromagnetism. The breaking of the time-reversal symmetry and spin splitting of the electronic states by the magnetization in ferromagnets underpins a range of macroscopic responses in this extensively explored and exploited type of magnets. By comparison, antiferromagnets have vanishing net magnetization. This Perspective reflects on recent observations of materials hosting an intriguing ferromagnetic-antiferromagnetic dichotomy, in which spin-split spectra and macroscopic observables, akin to ferromagnets, are accompanied by antiparallel magnetic order with vanishing magnetization, typical of antiferromagnets. An unconventional non-relativistic symmetry-group formalism offers a resolution of this apparent contradiction by delimiting a third basic magnetic phase, dubbed altermagnetism. Our Perspective starts with an overview of the still emerging unique phenomenology of the phase, and of the wide array of altermagnetic material candidates. In the main part of the article, we illustrate how altermagnetism can enrich our understanding of overarching condensed-matter physics concepts, and have impact on prominent condensed-matter research areas.

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