Spin-transfer torque in ferromagnetic bilayers generated by anomalous Hall effect and anisotropic magnetoresistance.

Transactions of The Faraday Society Pub Date : 2016-01-01 Epub Date: 2016-11-04 DOI:10.1117/12.2235822
Tomohiro Taniguchi, Julie Grollier, M D Stiles
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Abstract

We propose an experimental scheme to determine the spin-transfer torque efficiency excited by the spin-orbit interaction in ferromagnetic bilayers from the measurement of the longitudinal magnetoresistace. Solving a diffusive spin-transport theory with appropriate boundary conditions gives an analytical formula of the longitudinal charge current density. The longitudinal charge current has a term that is proportional to the square of the spin-transfer torque efficiency and that also depends on the ratio of the film thickness to the spin diffusion length of the ferromagnet. Extracting this contribution from measurements of the longitudinal resistivity as a function of the thickness can give the spin-transfer torque efficiency.

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反常霍尔效应和各向异性磁阻在铁磁双层膜中产生的自旋转移力矩。
我们提出了一种实验方案,通过测量纵向磁阻来确定铁磁双层膜中自旋轨道相互作用激发的自旋传输扭矩效率。利用适当的边界条件求解扩散自旋传输理论,可以得到纵向电荷电流密度的解析公式。纵向电荷电流有一个项与自旋传输转矩效率的平方成正比,同时也取决于薄膜厚度与铁磁体自旋扩散长度之比。从纵向电阻率随厚度变化的测量结果中提取这一贡献,就能得到自旋转移转矩效率。
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