Current-phase relation in a topological Josephson junction: Andreev bands versus scattering states

S. Backens, A. Shnirman
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引用次数: 1

Abstract

We consider a long topological Josephson junction formed on a conducting 2D surface of a 3D topological insulator (TI). The superconducting correlations are proximity-induced by s-wave superconductors covering the surface. The 1D spacing between the coverings is either unfilled or filled by a magnetic insulator. Generally, the Josephson current mediated by the TI surface is determined by scattering modes as well as by the states localized around the junction (Andreev bound states or Andreev bands). We find out that it is crucial to take into account both contributions to determine the current--phase relation of the topological Josephson junction. We analyze the dependence of the Josephson current on the thickness of the junction as well as the deviations from the sinusoidal shape of the current--phase relation.
拓扑Josephson结的电流相关系:Andreev带与散射态
我们考虑在三维拓扑绝缘体(TI)的导电二维表面上形成的长拓扑约瑟夫森结。超导相关是由覆盖表面的s波超导体邻近诱导的。覆盖层之间的一维间距要么未填充,要么由磁性绝缘体填充。通常,由TI表面介导的约瑟夫森电流由散射模式以及结周围的定域态(Andreev束缚态或Andreev带)决定。我们发现,考虑这两种贡献来确定拓扑约瑟夫森结的电流-相位关系是至关重要的。我们分析了约瑟夫森电流与结厚的关系,以及偏离电流-相位关系的正弦形状。
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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