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首页> 外文期刊>Nature Communications >Magnetically-driven colossal supercurrent enhancement in InAs nanowire Josephson junctions
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Magnetically-driven colossal supercurrent enhancement in InAs nanowire Josephson junctions

机译:INAS纳米线Josephson结的磁力驱动的巨大超电流增强

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The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is introduced in a weak link between two superconducting electrodes by Andreev reflections. The physical details and topology of the junction drastically modify the properties of the supercurrent and a strong enhancement of the critical supercurrent is expected to occur when the topology of the junction allows an emergence of Majorana bound states. Here we report charge transport measurements in mesoscopic Josephson junctions formed by InAs nanowires and Ti/Al superconducting leads. Our main observation is a colossal enhancement of the critical supercurrent induced by an external magnetic field applied perpendicular to the substrate. This striking and anomalous supercurrent enhancement cannot be described by any known conventional phenomenon of Josephson junctions. We consider these results in the context of topological superconductivity, and show that the observed critical supercurrent enhancement is compatible with a magnetic field-induced topological transition.
机译:约瑟夫森效应是一种基本量子现象,其中在两个超导电极之间通过Andreev反射引入折射率超电流。交界处的物理细节和拓扑大大修改了超级电流的性质,并且当结的拓扑允许出现Majorana绑定状态时,预计会发生临界超流的强大增强。在这里,我们在由INAS纳米线和Ti / Al超导引线形成的介镜Josephson结处报告电荷传输测量。我们的主要观察是由垂直于基材施加的外部磁场引起的临界超流的巨大增强。这种醒目和异常的超电流增强不能通过任何已知的JosephseN结合的传统现象来描述。我们认为这些结果在拓扑超导性的背景下,并且表明观察到的关键超电流增强与磁场诱导的拓扑转变兼容。

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