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Inverse Spin-Hall Effect Induced by Spin Pumping in Various Metals*

机译:多种金属中的自旋泵引起的逆自旋霍尔效应*

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The inverse spin-Hall effect (ISHE), conversion of spin currents into electric voltage, was observed in ${rm Ni}_{81}{rm Fe}_{19}/N$ ($N={rm Pt}$, Pd, Ag, and Au) films using the spin pumping at room temperature. The spin pumping driven by magnetization precession in the ${rm Ni}_{81}{rm Fe}_{19}$ layer injects a spin current into the $N$ layer, giving rise to an electric potential difference between the edges of the $N$ layer via ISHE. We found resonant electromotive force signals at the ferromagnetic resonance condition in the ${rm Ni}_{81}{rm Fe}_{19}/N$ films. The spectral shape of the electromotive force signals are well reproduced by simple Lorentz functions, which is consistent with the prediction of ISHE induced by the spin pumping. The ISHE signal was observed to typically be enhanced in the ${rm Ni}_{81}{rm Fe}_{19}/{rm Pt}$ system, showing the crucial role of the spin-orbit interaction in ISHE induced by the spin pumping.
机译:以$ {rm Ni} _ {81} {rm Fe} _ {19} / N $($ N = {rm Pt} $$)观察到逆自旋霍尔效应(ISHE),即自旋电流转换为电压。 ,Pd,Ag和Au薄膜)在室温下使用自旋泵。在$ {rm Ni} _ {81} {rm Fe} _ {19} $层中由磁化进动驱动的自旋泵浦将自旋电流注入$ N $层中,从而在电极的边缘之间产生电势差通过ISHE的$ N $层。我们在$ {rm Ni} _ {81} {rm Fe} _ {19} / N $薄膜中发现了在铁磁谐振条件下的谐振电动势信号。通过简单的洛伦兹函数可以很好地再现电动势信号的频谱形状,这与自旋泵引起的ISHE的预测是一致的。在$ {rm Ni} _ {81} {rm Fe} _ {19} / {rm Pt} $系统中,通常观察到ISHE信号增强,表明自旋轨道相互作用在ISHE引起的ISHE中起着至关重要的作用。自旋抽水。

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