论文标题
抗铁磁铁/重金属双层中的单向磁力
Unidirectional Magnetoresistance in Antiferromagnet/Heavy-metal bilayers
论文作者
论文摘要
由于最近的研究表明,共线抗抗铁磁铁的旋转方向发生了适度的变化,因此电子传输和抗铁磁序列之间的相互作用引起了人们的关注激增。在读取此类磁性顺序的众多电探针中,单向磁磁性(UMR),其中电阻在当前方向的反转下变化,可以为旋转轨道耦合系统的传输特性提供丰富的见解。但是,鉴于没有内在的自旋依赖性散射,以前从未在抗铁磁体中观察到UMR。在这里,我们报告了FERH $ | $ pt双层的抗磁性阶段的UMR,它发生了符号变化,然后随着外部磁场的增加而大大增加,与铁磁和非磁系统中的UMR相反。我们表明,Rashba自旋轨道耦合无法解释抗铁磁双层中的相当大的UMR,并且该野外诱导的旋转倾斜会扭曲费米轮廓,从而通过两个数量级来大大增强UMR。我们的结果可以激发抗磁性旋转型的不断增长的领域,并为开发基于可调的抗铁磁铁的旋转旋转器设备的发展提供了途径。
The interplay between electronic transport and antiferromagnetic order has attracted a surge of interest as recent studies have shown that a moderate change in the spin orientation of a collinear antiferromagnet may have a significant effect on the electronic band structure. Among numerous electrical probes to read out such magnetic order, unidirectional magnetoresistance (UMR), where the resistance changes under the reversal of the current direction, can provide rich insights into the transport properties of spin-orbit coupled systems. However, UMR has never been observed in antiferromagnets before, given the absence of intrinsic spin-dependent scattering. Here, we report a UMR in the antiferromagnetic phase of a FeRh$|$Pt bilayer, which undergoes a sign change and then increases strongly with an increasing external magnetic field, in contrast to UMRs in ferromagnetic and nonmagnetic systems. We show that Rashba spin-orbit coupling alone cannot explain the sizable UMR in the antiferromagnetic bilayer and that field-induced spin canting distorts the Fermi contours to greatly enhance the UMR by two orders of magnitude. Our results can motivate the growing field of antiferromagnetic spintronics, and suggest a route to the development of tunable antiferromagnet-based spintronics devices.