Brekke Bjørnulf, Sukhachov Pavlo, Giil Hans Gløckner, Brataas Arne, Linder Jacob
Center for Quantum Spintronics, Department of Physics, <a href="https://ror.org/05xg72x27">Norwegian University of Science and Technology</a>, NO-7491 Trondheim, Norway.
Phys Rev Lett. 2024 Dec 6;133(23):236703. doi: 10.1103/PhysRevLett.133.236703.
New unconventional compensated magnets with a p-wave spin polarization protected by a composite time-reversal translation symmetry have been proposed in the wake of altermagnets. To facilitate the experimental discovery and applications of these unconventional magnets, we construct an effective analytical model. The effective model is based on a minimal tight-binding model for unconventional p-wave magnets that clarifies the relation to other magnets with p-wave spin-polarized bands. One of the most prominent advantages of our analytical model is the possibility to employ various analytical approaches while capturing essential features of p-wave magnets. We illustrate the effective model by evaluating the tunneling conductance in junctions with p-wave magnets, revealing a large magnetoresistance, spin filtering, and anisotropic bulk spin conductivity beyond linear response despite the absence of a net magnetization. These results show that unconventional p-wave magnets offer several useful functionalities, broadening the material selection for spintronics devices.
继交替磁体之后,人们提出了一种新型非常规补偿磁体,其p波自旋极化由复合时间反演平移对称性保护。为了促进这些非常规磁体的实验发现和应用,我们构建了一个有效的解析模型。该有效模型基于一个用于非常规p波磁体的最小紧束缚模型,阐明了与其他具有p波自旋极化能带的磁体的关系。我们解析模型最显著的优点之一是,在捕捉p波磁体基本特征的同时,可以采用各种解析方法。我们通过评估与p波磁体结中的隧穿电导来说明有效模型,揭示了尽管没有净磁化,但仍存在大磁阻、自旋过滤和超出线性响应的各向异性体自旋电导率。这些结果表明,非常规p波磁体具有多种有用功能,拓宽了自旋电子器件的材料选择范围。