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Robust gap closing and reopening in topological-insulator Josephson junctions

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arxiv 2406.08265 v2 pith:NZQ2P5HY submitted 2024-06-12 cond-mat.supr-con cond-mat.mes-hallcond-mat.mtrl-scicond-mat.str-el

classification cond-mat.supr-concond-mat.mes-hallcond-mat.mtrl-scicond-mat.str-el
keywords closingjosephsonvarphitopologicaljunctionrobustandreevlocking
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abstract

In the seminal proposal by Fu and Kane, the superconducting proximity effect is used to realize topological superconductivity in the topological surface state (TSS) of a 3D topological insulator (TI). In a line Josephson junction made on the TI surface, the spin-momentum locking of the TSS guarantees the existence of a pair of spin-non-degenerate, perfectly transmitted Andreev modes. These modes lead to robust gap closing and parity alteration as a function of the superconducting phase difference $\varphi$ across the junction. Here, we report the observation of the predicted gap closing at $\varphi = (2n+1)\pi$ in a TI Josephson junction ($n$ integer), where the local density of states is probed via tunnel contacts and $\varphi$ is controlled by a flux loop. This phenomenon is robust for a wide range of chemical potentials, supporting its TSS origin. Under an applied perpendicular magnetic field, Josephson vortices form, making $\varphi$ position-dependent. In this case, the gap closing occurs locally at the Josephson vortex cores where $\varphi = (2n+1)\pi$, which we also observe. Our results confirm the fundamental role of spin-momentum locking in the Andreev physics in the TSS, which implies that the observed gap closing and reopening has a topological nature.

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  1. Tunable superconducting diode effect in a topological nano-SQUID

    cond-mat.supr-con 2024-12 conditional novelty 7.0 of 10

    A side-contacted BiSbTeSe2 nanowire Josephson junction shows a large, gate- and field-tunable superconducting diode effect, interpreted as a nano-SQUID whose sign reversal coincides with a topological phase transition.

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