Nonequilibrium Spin-Hall Detector with Alternating Current

Y. Chiang, Mikhail Olegovich Dzyuba
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引用次数: 1

Abstract

An oscillographic study of the Hall voltage with an unpolarized alternating current through a platinum sample revealed chiral features of the Hall effect, which clearly demonstrate the presence of the spin Hall effect in metals with a noticeable spin-orbit interaction. It was confirmed that, as in the case of direct current, the possibility of a spin-Hall effect is associated with the presence of an imbalance of the spins and charges at the edges of the samples, which is realized using their asymmetric geometry. In particular, it was found that such chiral features of the nonequilibrium spin-Hall effect (NSHE), such as independence from the direction of the injection current and the direction of the constant magnetic field, in the case of alternating current, make it possible to obtain a double-frequency transverse voltage, which can be used as a platform for creating spintronics devices.
交流电非平衡自旋霍尔探测器
对通过铂样品的非极化交流电流的霍尔电压进行了示波器研究,揭示了霍尔效应的手性特征,这清楚地证明了自旋霍尔效应在具有明显自旋轨道相互作用的金属中存在。结果证实,在直流电的情况下,自旋霍尔效应的可能性与样品边缘的自旋和电荷的不平衡有关,这是利用它们的不对称几何来实现的。特别是,研究发现,在交流情况下,非平衡自旋霍尔效应(NSHE)的手性特征,如与注入电流方向和恒定磁场方向无关,使得获得双频横向电压成为可能,这可以作为创建自旋电子学器件的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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