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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >An angular analysis to separate spin pumping-induced inverse spin Hall effect from spin rectification in a Py/Pt bilayer
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An angular analysis to separate spin pumping-induced inverse spin Hall effect from spin rectification in a Py/Pt bilayer

机译:从Py / Pt双层中的自旋整流中分离自旋泵浦引起的逆自旋霍尔效应与自旋整流的角度分析

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摘要

Through the inverse spin Hall effect, spin-pumped currents from a Py(Ni_(80)Fe_(20)) layer are converted to direct current (dc) voltages in an adjacent platinum (Pt) layer, which adds to dc voltages generated by the spin rectification effect originating from anisotropic magnetoresistance, ordinary and anomalous Hall effect in the permalloy (Py) layer. Based on a shorted microstrip fixture, we perform angular measurements of rectified dc voltages in a Py(Ni_(80)Fe_(20))/Pt bilayer to simultaneously separate spin pumping-induced inverse spin Hall voltages from spin-rectified voltages. A systematic approach to accurately determine the spin-Hall angle of Pt is presented.
机译:通过逆自旋霍尔效应,来自Py(Ni_(80)Fe_(20))层的自旋泵浦电流被转换为相邻铂(Pt)层中的直流(dc)电压,这会增加由自旋整流效应源自各向异性磁阻,坡莫合金(Py)层中的普通霍尔效应和反常霍尔效应。基于短路的微带夹具,我们在Py(Ni_(80)Fe_(20))/ Pt双层中执行整流后的直流电压的角度测量,以同时将自旋泵激引起的逆自旋霍尔电压与自旋整流电压分开。提出了一种精确确定Pt自旋霍尔角的系统方法。

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