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Angular dependence of inverse spin-Hall effect induced by spin pumping: Experimental verification of phenomenological model of spin pumping

机译:旋转泵浦诱导逆自旋厅效应的角度依赖性:旋转泵浦现象学模型的实验验证

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The phenomenological model of the spin pumping has been investigated in terms of the polar-angular dependence of the inverse spin-Hall effect induced by the spin pumping in F/Pt thin films (F = Ni,Ni_(81)Fe_(19), and Fe). The magnetization dynamics in the ferromagnetic layer drives the spin pumping, which generates a spin current in the Pt layer. This spin current is converted into a charge current via the strong inverse spin-Hall effect in the Pt layer and detected as electromotive force at the edges of the Pt layer. The polar-angular dependence of the electromotive force is well reproduced by a model based on the Landau-Lifshitz-Gilbert equation combined with the phenomenological models of the spin pumping and the inverse spin-Hall effect regardless of the species of the ferromagnetic layer, demonstrating the validity of the phenomenological model of the spin pumping.
机译:在F / PT薄膜中旋转泵送诱导的逆旋转霍尔效应的偏振角度依赖性(F = Ni,Ni_(81)Fe_(19),)已经研究了旋转泵的极性角度依赖性的现象学模型和fe)。铁磁层中的磁化动态驱动自旋泵送,该旋转泵送,该旋转泵送为PT层中的旋转电流。通过PT层中的强逆旋转霍尔效应将该旋转电流转换成充电电流,并在PT层的边缘处被检测为电动势。基于Landau-Lifshitz-Gilbert方程的模型与旋转泵送的现象学模型和逆旋转霍尔效果相结合的模型,电动势的偏振依赖性良好地再现了,而不管铁磁层的种类,展示自旋泵送现象模型的有效性。

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