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Complex band-structure analysis and topological physics of Majorana nanowires

机译:Majorana纳米线的复杂带状结构分析和拓扑物理学

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摘要

We review applications of complex band structure theory to describe Majorana states in nanowires and nanowire junctions. The dimensionality of the considered wires is gradually increased, from strictly 1D to quasi-1D with one and two transverse dimensions. The complex wave number analysis is applied to two main types of Majorana modes: end states in hybrid semiconductor wires and chiral edge states in hybrid wires of quantum-anomalous Hall insulators. In topological NS and NSN junctions with Majorana modes conductance oscillations and spatial distributions of density and current are described. Finally, the optical absorption in finite systems with both types of Majorana modes is considered.
机译:我们审查复杂频带结构理论的应用,描述纳米线和纳米线连接中的Majorana状态。 所考虑的电线的维度逐渐增加,从严格的1D到准1D,具有一个和两个横向尺寸。 复杂波数分析应用于两种主要类型的Majorana模式:混合半导体线的结束状态和量子 - 异常霍尔绝缘子的混合电线中的手性边缘状态。 在具有Majorana模式的拓扑NS和NSN结中,描述了电导振荡和密度和电流的空间分布。 最后,考虑了具有两种类型Majorana模式的有限系统中的光学吸收。

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