论文标题

在近端拓扑绝缘子纳米骨中强大而脆弱的主要界面状态

Robust and fragile Majorana bound states in proximitized topological insulator nanoribbons

论文作者

Heffels, Dennis, Burke, Declan, Connolly, Malcolm R., Schüffelgen, Peter, Grützmacher, Detlev, Moors, Kristof

论文摘要

具有接近性超导性超导性的拓扑绝缘子(TI)纳米纤维是Majorana结合状态(MBS)的有前途的平台。在这项工作中,我们考虑了一种通过其顶表面与超导体接触的Ti纳米苯的详细建模方法,该方法在其表面状态谱中引起了超导差距。该系统显示具有不同数量的最终端口MBS的丰富相图,这是化学势和磁通量的函数。考虑静电障碍时,这些MBS可以稳健或脆弱。我们模拟了隧道光谱设置,以探测顶级拟光Ti纳米骨的不同拓扑阶段。我们的仿真结果表明,顶级型Ti纳米替宾非常适合实现完全间隙的拓扑超导性,尤其是当Fermi水平固定在Dirac点附近时。在此制度中,设置产生一对MBS,在接近式色带的相对端很好地分离,这产生了强大的量化零偏置电导峰。

Topological insulator (TI) nanoribbons with proximity-induced superconductivity are a promising platform for Majorana bound states (MBSs). In this work, we consider a detailed modeling approach for a TI nanoribbon in contact with a superconductor via its top surface, which induces a superconducting gap in its surface-state spectrum. The system displays a rich phase diagram with different numbers of end-localized MBSs as a function of chemical potential and magnetic flux piercing the cross section of the ribbon. These MBSs can be robust or fragile upon consideration of electrostatic disorder. We simulate a tunneling spectroscopy setup to probe the different topological phases of top-proximitized TI nanoribbons. Our simulation results indicate that a top-proximitized TI nanoribbon is ideally suited for realizing fully gapped topological superconductivity, in particular when the Fermi level is pinned near the Dirac point. In this regime, the setup yields a single pair of MBSs, well separated at opposite ends of the proximitized ribbon, which gives rise to a robust quantized zero-bias conductance peak.

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