论文标题
Rashba自旋轨道相互作用引起的磁各向异性调节
Rashba spin-orbit interaction induced modulation of magnetic anisotropy
论文作者
论文摘要
在过去的几十年中,Rashba自旋轨道耦合(SOC)已成功用于在量子氧化物界面上出现外来现象。在这些系统中,电荷转移,断裂对称性和SOC的综合效应引起了界面磁性和运输特性的吸引力。在这里,我们通过电荷转移驱动的Rashba Soc在CAMNO3/CAIRO3基于CAMNO3/CAIRO3中的控制和调整界面现象的见解。这些倾斜的抗铁磁异质结构中的异常大厅效应源自与电子带结构拓扑相关的内在贡献,并且主要局限于界面。 Rashba Soc重建了浆果曲率,并通过两个数量级增强了异常的大厅电导率。从各向异性的磁势测量值中,我们证明了Rashba Soc有助于调整磁各向异性,其中磁化易于轴从平面外方向旋转到平面方向。调整Rashba SoC和由此产生的竞争磁各向异性的能力为操纵电子带结构的途径提供了用于自旋垒应用有用的非平凡旋转纹理的起源。
In past few decades, Rashba spin-orbit coupling (SOC) has been successfully employed for the emergence of exotic phenomena at the quantum oxide interfaces. In these systems, the combined effect of charge transfer, broken symmetries and SOC yields intriguing interfacial magnetism and transport properties. Here, we provide an insight to control and tune interfacial phenomena in CaMnO3/CaIrO3 based 3d-5d oxide heterostructures by the charge transfer driven Rashba SOC. Anomalous Hall effect in these canted antiferromagnetic heterostructures originates from the intrinsic contribution associated with the topology of the electronic band structure and it is mostly confined to the interface. Rashba SOC reconstructs the Berry curvature and enhances the anomalous Hall conductivity by two orders of magnitude. From the anisotropy magnetoresistance measurements we demonstrate that Rashba SOC is instrumental in tailoring magnetic anisotropy where magnetization easy-axis rotates from the out-of-plane direction to the in-plane direction. The ability to tune Rashba SOC and resulting competing magnetic anisotropy provides a route to manipulate electronic band structure for the origin of non-trivial spin texture useful for spin-orbitronics applications.