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4π-periodic Josephson supercurrent in HgTe-based topological Josephson junctions

机译:基于HgTe的拓扑约瑟夫森结中的4π周期约瑟夫森超电流

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摘要

The Josephson effect describes the generic appearance of a supercurrent in a weak link between two superconductors. Its exact physical nature deeply influences the properties of the supercurrent. In recent years, considerable efforts have focused on the coupling of superconductors to the surface states of a three-dimensional topological insulator. In such a material, an unconventional induced p-wave superconductivity should occur, with a doublet of topologically protected gapless Andreev bound states, whose energies vary 4π-periodically with the superconducting phase difference across the junction. In this article, we report the observation of an anomalous response to rf irradiation in a Josephson junction made of a HgTe weak link. The response is understood as due to a 4π-periodic contribution to the supercurrent, and its amplitude is compatible with the expected contribution of a gapless Andreev doublet. Our work opens the way to more elaborate experiments to investigate the induced superconductivity in a three-dimensional insulator.
机译:约瑟夫森效应描述了两个超导体之间薄弱环节中超电流的一般现象。其确切的物理性质会深深影响超电流的性能。近年来,相当大的努力集中在将超导体耦合到三维拓扑绝缘体的表面状态上。在这种材料中,应该出现非常规的感应p波超导,并具有拓扑保护的无间隙安德列夫键合态的二重态,该态的能量随跨结的超导相差而周期性地变化4π。在本文中,我们报告了在由HgTe薄弱环节构成的约瑟夫森交界处对射频辐射异常反应的观察结果。响应被理解为归因于对超电流的4π周期贡献,并且其幅度与无间隙Andreev doublet的预期贡献相符。我们的工作为开展更精细的实验以研究三维绝缘子中的感应超导开辟了道路。

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