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拓扑超导结中超导性从自旋单重态配对到三重态配对的转变

Superconductivity switch from spin-singlet to -triplet pairing in a topological superconducting junction.

作者信息

Tao Ze, Chen F J, Zhou L Y, Li Bin, Tao Y C, Wang J

机构信息

College of Telecommunications & Information Engineering, Nanjing University of Posts and Telecommunications, Nanjing 210023, People's Republic of China.

出版信息

J Phys Condens Matter. 2018 Jun 6;30(22):225302. doi: 10.1088/1361-648X/aabdfd. Epub 2018 Apr 13.

Abstract

The interedge coupling is the cardinal characteristic of the narrow quantum spin Hall (QSH) insulator, and thus could bring about exotic transport phenomena. Herein, we present a theoretical investigation of the spin-resolved Andreev reflection (AR) in a QSH insulator strip touching on two neighbouring ferromagnetic insulators and one s-wave superconductor. It is demonstrated that, due to the interplay of the interedge coupling and ferromagnetic configuration, there could be not only usual local ARs leading to the spin-singlet pairing with the incident electron and Andreev-reflected hole from different spin subbands, but also novel local ARs giving rise to the spin-triplet pairing from the same spin subband. However, only the latter exists in the absence of the interedge coupling, and therefore the two pairings in turn testify the helical spin texture of the edge states. By proper tuning of the band structures of the ferromagnetic layers, under the resonance bias voltage, the usual and novel local ARs of [Formula: see text] can be all exhibited, resulting in fully spin-polarized pure spin-singlet superconductivity and pure spin-triplet superconductivity, respectively, which suggests a superconductivity switch from spin-singlet to -triplet pairing by electrical control. The results can be experimentally confirmed by the tunneling conductance and the noise power.

摘要

边缘间耦合是窄量子自旋霍尔(QSH)绝缘体的主要特征,因此可能引发奇异的输运现象。在此,我们对一个与两个相邻铁磁绝缘体和一个s波超导体接触的QSH绝缘条中的自旋分辨安德列夫反射(AR)进行了理论研究。结果表明,由于边缘间耦合与铁磁构型的相互作用,不仅存在通常的局域AR,导致来自不同自旋子带的入射电子与安德列夫反射空穴形成自旋单重态配对,还存在新颖的局域AR,导致来自相同自旋子带的自旋三重态配对。然而,在没有边缘间耦合的情况下仅存在后者,因此这两种配对反过来证明了边缘态的螺旋自旋纹理。通过适当调整铁磁层的能带结构,在共振偏置电压下,可以同时展现出通常的和新颖的[公式:见原文]局域AR,分别导致完全自旋极化的纯自旋单重态超导和纯自旋三重态超导,这表明通过电控制可实现从自旋单重态到三重态配对的超导转变。这些结果可以通过隧穿电导和噪声功率进行实验验证。

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