具有磁障的拓扑绝缘体缩窄中的法布里-帕氏共振涡和磁导

R. P. Maciel, A. L. Ara'ujo, C. Lewenkopf, G. J. Ferreira
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引用次数: 4

摘要

由于不存在后向散射,二维时间反转拓扑绝缘体的边缘态在宽带状上支持完美的螺旋电导。在这里,我们研究了TI纳米带的输运性质的变化,通过引入沿带的收缩。这种设置允许边缘状态杂交,导致收缩末端的反射。我们发现沿一个边缘运行的电子态可以沿另一个边缘多次反射回来,在收缩内产生具有明确电导峰的法布里-佩罗共振涡。我们表明,磁屏障允许人们操纵这些峰,并获得系统自旋分辨磁导的显著变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabry-Pérot resonant vortices and magnetoconductance in topological insulator constrictions with magnetic barriers
The edge states of two-dimensional time-reversal topological insulators (TIs) support a perfect helical conductance on wide ribbons due to the absence of backscattering. Here, we study the changes in the transport properties of TI nanoribbons by introducing a constriction along the ribbon. This set up allows the edge states to hybridize, leading to reflections at the ends of the constriction. We find that the electronic states running along one edge can be reflected back along the opposite edge multiple times, giving rise to Fabry-Perot resonant vortexes within the constriction with well defined conductance peaks. We show that magnetic barriers allow one to manipulate these peaks and obtain significant changes in the system spin-resolved magnetoconductance.
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