论文标题

pt/(coni)n多层中没有旋转霍尔磁性

Absence of Spin Hall Magnetoresistance in Pt/(CoNi)n multilayers

论文作者

Cui, Yongwei, Feng, Xiaoyu, Zhang, Qihan, Zhou, Hengan, Jiang, Wanjun, Cao, Jiangwei, Xue, Desheng, Fan, Xiaolong

论文摘要

我们系统地研究了具有垂直磁各向异性和FCC(111)纹理的PT/(CONI)N多层系统中的磁化效应。在垂直于电流的平面中观察到磁倍率的角度依赖性,包括高阶余弦项。这归因于由晶体对称性,晶粒的有序排列以及各向异性界面磁势效应引起的几何大小效应,这是由于在接口处的对称性破坏引起的。根据我们的实验结果的准确性,PT/(CONI)N中的自旋霍尔磁磁性(SMR)的大小预计将低于$ 1 \ times10^{ - 4} $。但是,在评估使用自旋 - 扭转铁磁共振测量值$ \ geq $ 0.07的自旋霍尔角度时,我们的样品中SMR的理论幅度估计超过$ 7 \ times10^{ - 4} $。实验结果中没有SMR的情况可以通过铁磁金属中巡回电子的Elliott-YFET自旋松弛来解释,这表明重金属/铁磁绝缘子中自旋电流的边界条件可能不适用于全金属异质结构。

We systematically studied the magnetoresistance effect in a Pt/(CoNi)n multilayer system with perpendicular magnetic anisotropy and the fcc (111) texture. The angular dependence of magnetoresistance, including high-order cosine terms, was observed in a plane perpendicular to the electrical current; this was attributed to the geometrical-size effects caused by crystal symmetry, the ordered arrangement of grains, and the anisotropic interface magnetoresistance effect caused by the breaking of the symmetry at interfaces. Based on the accuracy of our experimental results, the magnitude of spin Hall magnetoresistance (SMR) in Pt/(CoNi)n was expected to be below $1\times10^{-4}$. However, on evaluating the spin Hall angle of $\geq$ 0.07 for Pt using spin-torque ferromagnetic resonance measurements, the theoretical magnitude of SMR in our samples was estimated to exceed $7\times10^{-4}$. This absence of SMR in the experimental results can be explained by the Elliott-Yafet spin relaxation of itinerant electrons in the ferromagnetic metal, which indicates that the boundary conditions of the spin current in the heavy metal/ferromagnetic insulator may not be applicable to all-metallic heterostructures.

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