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准粒子介导的超导中的自旋霍尔效应。

Quasiparticle-mediated spin Hall effect in a superconductor.

机构信息

Institute for Solid State Physics, University of Tokyo, Kashiwa 277-8581, Japan.

Department of Quantum Engineering, Nagoya University, Nagoya 464-8603, Japan.

出版信息

Nat Mater. 2015 Jul;14(7):675-8. doi: 10.1038/nmat4276. Epub 2015 May 18.

Abstract

In some materials the competition between superconductivity and magnetism brings about a variety of unique phenomena such as the coexistence of superconductivity and magnetism in heavy-fermion superconductors or spin-triplet supercurrent in ferromagnetic Josephson junctions. Recent observations of spin-charge separation in a lateral spin valve with a superconductor evidence that these remarkable properties are applicable to spintronics, although there are still few works exploring this possibility. Here, we report the experimental observation of the quasiparticle-mediated spin Hall effect in a superconductor, NbN. This compound exhibits the inverse spin Hall (ISH) effect even below the superconducting transition temperature. Surprisingly, the ISH signal increases by more than 2,000 times compared with that in the normal state with a decrease of the injected spin current. The effect disappears when the distance between the voltage probes becomes larger than the charge imbalance length, corroborating that the huge ISH signals measured are mediated by quasiparticles.

摘要

在某些材料中,超导性和磁性之间的竞争带来了各种独特的现象,例如重费米子超导体中的超导性和磁性共存或铁磁共振结中的自旋三重态超导电流。最近在具有超导体的横向自旋阀中观察到自旋电荷分离,这表明这些显著的特性适用于自旋电子学,尽管仍有少数工作探索这种可能性。在这里,我们报告了在超导体 NbN 中观察到的准粒子介导的自旋霍尔效应的实验结果。这种化合物甚至在超导转变温度以下也表现出逆自旋霍尔(IS H)效应。令人惊讶的是,与正常状态相比,注入自旋电流减少时,IS H 信号增加了 2000 多倍。当电压探头之间的距离变得大于电荷非平衡长度时,该效应消失,这证实了所测量的巨大 IS H 信号是由准粒子介导的。

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