论文标题
CAMNO3/CAIRO3异质结构中的巨型各向异性磁化磁盘具有双四倍的对称性
Giant anisotropic magnetoresistance with dual-four-fold symmetry in CaMnO3/CaIrO3 heterostructures
论文作者
论文摘要
在新型3D-5D异质结构中实现了四倍的各向异性磁化(AMR),从而提高了抗磁性旋转型的重大努力。然而,尽管有可能结合强旋轨耦合,但到目前为止,仅检测到小型AMR信号,从而促使搜索新机制以增强信号。在这项关于CAMNO3/CAIRO3异质结构的研究中,我们报告了独特的双四倍对称70%AMR;信号比以前在相似系统中观察到的两个数量级。我们发现,通过在组成层中通过具有相似意义的八面体倾斜来调整大型双轴各向异性,而二阶则通过在几乎mott型相中的自旋拖油过渡触发。这两种现象之间的动力学是阶梯状AMR和叠加的双轴 - 肛门反相诱导的AMR捕获伪源与晶格和外部磁场的微妙相互作用的动力学。我们的研究表明,电荷转移,层间耦合和自旋流动过渡的结合可以产生与传感和抗磁性记忆应用相关的巨型AMR。
The realization of four-fold anisotropic magnetoresistance (AMR) in novel 3d-5d heterostructures has boosted major efforts in antiferromagnetic spintronics. However, despite the potential of incorporating strong spin-orbit coupling, only small AMR signals have been detected thus far, prompting a search for new mechanisms to enhance the signal. In this study on CaMnO3/CaIrO3 heterostructures, we report a unique dual-four-fold symmetric 70% AMR; a signal two orders of magnitude larger than previously observed in similar systems. We find that one order is enhanced by tuning a large biaxial anisotropy through octahedral tilts of similar sense in the constituent layers, while the second order is triggered by a spin-flop transition in a nearly Mott-type phase. Dynamics between these two phenomena as evidenced by the step-like AMR and a superimposed biaxial-anisotropy-induced AMR capture a subtle interplay of pseudospin coupling with the lattice and external magnetic field. Our study shows that a combination of charge-transfer, interlayer coupling, and a spin-flop transition can yield a giant AMR relevant for sensing and antiferromagnetic memory applications.