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Unconventional proximity-induced superconductivity in bilayer systems

机译:双层系统中非常规的邻近感应超导性

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We study the proximity-induced superconducting state in a general bilayer-conventional s-wave superconductor hybrid structure. For the bilayer we include a general parabolic dispersion, Rashba spin-orbit coupling, and finite-layer tunneling as well as the possibility to apply a bias potential and a magnetic Zeeman field, in order to address experimentally relevant bilayer systems, ranging from topological insulator thin films to generic double quantum well systems. By extracting the proximity-induced anomalous Green's function in the bilayer, we show a very rich structure for the superconducting pairing, including different spin states and odd-frequency pairing. Equal-spin spin-triplet (p_x ± ip_y)-wave pairing is induced in both layers in the presence of a finite spin-orbit coupling and opposite-spin spin-triplet s-wave pairing with odd-frequency dependence appears for an applied magnetic Zeeman field. Finite interlayer pairing is also generally present in the bilayer. The interlayer pairing can be either even or odd in the layer index, with a complete reciprocity between parity in frequency and in layer index. We also find that a bilayer offers the possibility of sign reversal of the superconducting order parameters, both between the two layers and between multiple Fermi surfaces.
机译:我们研究了普通双层常规s波超导体混合结构中的邻近感应超导状态。对于双层,我们包括一般的抛物线色散,Rashba自旋轨道耦合和有限层隧穿,以及施加偏置电势和塞曼磁场的可能性,以便解决与实验相关的双层系统,从拓扑绝缘体薄膜到通用双量子阱系统。通过提取双层中的邻近感应异常格林函数,我们显示了非常丰富的超导配对结构,包括不同的自旋状态和奇数频率配对。在存在有限自旋-轨道耦合的情况下,在两层中感应出等旋转自旋三联体(p_x±ip_y)-波配对,并且对于所施加的磁场,出现奇数频率相关的反向自旋三联体-s波配对塞曼场。双层中通常也存在有限的层间配对。层间配对在层索引中可以是偶数或奇数,频率和层索引的奇偶性之间具有完全的互易性。我们还发现,双层在两层之间以及多个费米表面之间都提供了超导阶数参数正负号反转的可能性。

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