Crystalline anisotropic topological superconductivity in planar Josephson junctions

Joseph D. Pakizer, B. Scharf, A. Matos-Abiague
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引用次数: 7

Abstract

We theoretically investigate the crystalline anisotropy of topological phase transitions in phase-controlled planar Josephson junctions (JJs) subject to spin-orbit coupling and in-plane magnetic fields. It is shown how topological superconductivity (TS) is affected by the interplay between the magnetic field and the orientation of the junction with respect to its crystallographic axes. This interplay can be used to electrically tune between BDI and D symmetry classes in a controlled fashion and thereby optimize the stability and localization of Majorana bound states in planar Josephson junctions. Our findings can be used as a guide for achieving the most favorable conditions when engineering TS in planar JJs and can be particularly relevant for setups containing non-collinear junctions which have been proposed for performing braiding operations on multiple Majorana pairs.
平面约瑟夫森结的晶体各向异性拓扑超导性
从理论上研究了受自旋轨道耦合和平面磁场影响的相控平面约瑟夫森结(JJs)拓扑相变的晶体各向异性。它显示了拓扑超导性(TS)如何受到磁场和结的取向相对于其晶体轴之间的相互作用的影响。这种相互作用可用于在BDI和D对称类之间以受控的方式进行电调谐,从而优化平面Josephson结中Majorana束缚态的稳定性和局域化。我们的发现可以作为在平面JJs中工程TS时实现最有利条件的指南,并且可以特别适用于包含非共线结的设置,这些连接已被提议用于对多个Majorana对进行编织操作。
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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