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Full proximity treatment of topological superconductors in Josephson-junction architectures

机译:约瑟夫森结体系结构中拓扑超导体的完全邻近处理

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摘要

Experiments on planar Josephson-junction architectures have recently been shown to provide an alternative way of creating topological superconductors hosting accessible Majorana modes. These zero-energy modes can be found at the ends of a one-dimensional channel in the junction of a two-dimensional electron gas (2DEG) proximitized by two spatially separated superconductors. The channel, which is below the break between the superconductors, is not in direct contact with the superconducting leads, so that proximity coupling is expected to be weaker and less well controlled than in the simple nanowire configuration widely discussed in the literature. This provides a strong incentive for this paper which investigates the nature of proximitization in these Josephson-junction architectures. At a microscopic level we demonstrate how and when it can lead to topological phases. We do so by going beyond simple tunneling models through solving self-consistently the Bogoliubov-de Gennes equations of a heterostructure multicomponent system involving two spatially separated s-wave superconductors in contact with a normal Rashba spin-orbit-coupled 2DEG. Importantly, within our self-consistent theory we present ways of maximizing the proximity-induced superconducting gap by studying the effect of the Rashba spin-orbit coupling, chemical potential mismatch between the superconductor and 2DEG, and sample geometry on the gap. Finally, we note (as in experiment) a Fulde-Ferrell-Larkin-Ovchinnikov phase is also found to appear in the 2DEG channel, albeit under circumstances which are not ideal for the topological superconducting phase.
机译:最近已经证明,在平面约瑟夫森结结构上的实验提供了一种替代方法,可以创建承载可访问的Majorana模式的拓扑超导体。这些零能量模式可以在二维电子气(2DEG)的交界处的一维通道末端找到,该二维电子气由两个空间分隔的超导体所替代。在超导体之间的折线之下的沟道不与超导引线直接接触,因此与文献中广泛讨论的简单纳米线构造相比,预期接近耦合较弱并且控制得不好。这为本文研究这些约瑟夫森结结构中近似代理的性质提供了强有力的动力。在微观层面上,我们演示了它如何以及何时会导致拓扑阶段。我们通过简单地通过一致地求解异质结构多组分系统的Bogoliubov-de Gennes方程来做到这一点,该方程涉及两个空间分隔的s波超导体,并与正常的Rashba自旋轨道耦合2DEG接触。重要的是,在我们的自洽理论中,我们通过研究Rashba自旋轨道耦合的影响,超导体与2DEG之间的化学势失配以及间隙上的样品几何形状,提出了使邻近感应超导间隙最大化的方法。最后,我们注意到(如在实验中一样),尽管在对于拓扑超导阶段不理想的情况下,也发现Fulde-Ferrell-Larkin-Ovchinnikov相出现在2DEG通道中。

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  • 来源
    《Physical review》 |2019年第17期|174511.1-174511.16|共16页
  • 作者单位

    Univ Chicago, James Franck Inst, 5640 S Ellis Ave, Chicago, IL 60637 USA;

    Univ Chicago, James Franck Inst, 5640 S Ellis Ave, Chicago, IL 60637 USA|Natl Chiao Tung Univ, Dept Electrophys, Hsinchu 30010, Taiwan|Natl Ctr Theoret Sci, Phvs Div, Hsinchu 30010, Taiwan;

    Univ Chicago, James Franck Inst, 5640 S Ellis Ave, Chicago, IL 60637 USA;

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