论文标题

Majorana绑定的拓扑绝缘体中有隐藏的狄拉克点

Majorana bound states in topological insulators with hidden Dirac points

论文作者

Schulz, Ferdinand, Plekhanov, Kirill, Loss, Daniel, Klinovaja, Jelena

论文摘要

我们解决了这个问题,是否可以在二维拓扑绝缘子中在频谱中隐藏的狄拉克点中生成磁性螺旋传导界面处的majoragan绑定状态。在这种情况下,边缘状态的狄拉克点位于批量状态的能量,因此两种类型的状态被强烈杂交。在这里,我们表明,即使在磁带的宽度可以与边缘状态的定位长度相提并论的情况下,也可以在具有隐藏零点的材料中获得明确定义的主要结合状态。获得的拓扑相图允许一个人精确提取频谱中狄拉克点的位置。除了传输实验中主要由主要结合状态引起的标准零偏置峰值外,我们还建议通过电荷和自旋极化的测量来补充未来的实验。特别是,我们证明了两种可观察的迹象都在拓扑相转变上翻转它们的迹象,从而提供了拓扑超导性的独立标志。所有功能都针对基本强大的疾病保持稳定。

We address the issue whether it is possible to generate Majorana bound states at the magnetic-superconducting interface in two-dimensional topological insulators with hidden Dirac points in the spectrum. In this case, the Dirac point of edge states is located at the energies of the bulk states such that two types of states are strongly hybridized. Here, we show that well-defined Majorana bound states can be obtained even in materials with hidden Dirac point provided that the width of the magnetic strip is chosen to be comparable with the localization length of the edge states. The obtained topological phase diagram allows one to extract precisely the position of the Dirac point in the spectrum. In addition to standard zero-bias peak features caused by Majorana bound states in transport experiments, we propose to supplement future experiments with measurements of charge and spin polarization. In particular, we demonstrate that both observables flip their signs at the topological phase transition, thus, providing an independent signature of the presence of topological superconductivity. All features remain stable against substantially strong disorder.

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