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Floquet Majorana zero and pi modes in planar Josephson junctions

机译:Floquet Majorana Zero和PI模式在平面Josephson结算中

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摘要

We show how Floquet Majorana fermions may be experimentally realized by periodic driving of a solid-state platform. The system comprises a planar Josephson junction made of a proximitized heterostructure containing a two-dimensional electron gas with Rashba spin-orbit coupling and Zeeman field. We map the subgap Andreev bound states of the junction to an effective one-dimensional Kitaev model with long-range hopping and pairing terms. Using this effective model, we study the response of the system to periodic driving of the chemical potential, as applied via microwaves through a top gate. We use the bulk Floquet topological invariants to characterize the system in terms of the number of zero and pi Majorana modes for experimentally realistic parameters. We present signatures of these modes on differential conductance and local density of states. A notable feature is subharmonic response to the drive when both Majorana zero and pi modes are present, thus opening up the possibility of using this feature to clearly identifyMajorana modes. We highlight the robustness of these features to disorder, and show that despite hybridization due to long localization lengths, the main features of the subharmonic response are still identifiable in an experimental system that is readily accessible.
机译:我们展示了如何通过固态平台的定期驾驶实验地实现浮子马太太徒。该系统包括由替代具有二维电子气体的近代电子气体的平面Josephson结,其中具有Rashba旋转轨道耦合和塞曼领域。我们将交叉点的子图和映射到具有远程跳跃和配对术语的有效的一维考科型模型。使用这种有效模型,我们研究了系统的响应来定期驱动化学势,通过微波通过顶栅施加。我们使用散装浮子拓扑不变性,以实验现实参数的零和PI Majorana模式的数量来表征系统。我们在差分电导和局部密度上呈现这些模式的签名。当存在Majorana零和PI模式时,一个值得注意的特征是对驱动器的次谐响应,从而打开使用该特征来清楚地识别MAJORANA模式的可能性。我们突出了这些特征来紊乱的鲁棒性,并且表明,尽管定位长度长,但杂交仍然可以易于易于识别易于访问的实验系统。

著录项

  • 来源
    《Physical review, B》 |2019年第9期|共14页
  • 作者单位

    NYU Dept Phys Ctr Quantum Phenomena 4 Washington Pl New York NY 10003 USA;

    NYU Dept Phys Ctr Quantum Phenomena 4 Washington Pl New York NY 10003 USA;

    NYU Dept Phys Ctr Quantum Phenomena 4 Washington Pl New York NY 10003 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

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