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Josephson effects in the junction formed by DIII-class topological and s-wave superconductors with an embedded quantum dot

机译:约瑟夫森效应在DIII级拓扑和s波超导体与嵌入式量子点形成的结中

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摘要

We investigate the Josephson effects in the junction formed by the indirect coupling between DIII-class topological and s-wave superconductors via an embedded quantum dot. Due to the presence of two kinds of superconductors, three dot-superconductor coupling manners are considered, respectively. As a result, the Josephson current is found to oscillate in period 2π. More importantly, the presence of Majorana doublet in the DIII-class superconductor renders the current finite at the case of zero phase difference, with its sign determined by the fermion parity of such a junction. In addition, the dot-superconductor coupling plays a nontrivial role in adjusting the Josephson current. When the s-wave superconductor couples to the dot in the weak limit, the current direction will have an opportunity to reverse. It is believed that these results will be helpful for understanding the transport properties of the DIII-class superconductor.
机译:我们研究了DIII类拓扑和s波超导体通过嵌入式量子点之间的间接耦合形成的结中的约瑟夫森效应。由于存在两种超导体,分别考虑了三种点-超导体耦合方式。结果,发现约瑟夫森电流在周期2π中振荡。更重要的是,DIII级超导体中存在马约拉纳双峰使零相差情况下的电流变得有限,其符号由该结的费米奇校验确定。另外,点超导体耦合在调节约瑟夫森电流中起着重要作用。当s波超导体在弱极限处耦合到点时,电流方向将有机会反转。相信这些结果将有助于理解DIII类超导体的传输性质。

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