扭曲双层石墨烯的莫尔边态及其与量子泵浦的拓扑关系

Manato Fujimoto, M. Koshino
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引用次数: 7

摘要

研究了扭曲双层石墨烯的边缘态及其拓扑起源。我们发现,扭曲双层石墨烯具有与莫尔{e}模式相关的特殊边缘态,并且这些莫尔{e}边缘态的出现与描述层间相对滑动引起的拓扑电荷泵送的滑动陈恩数有关。当扭曲双分子层的一层相对于另一层相对滑动时,边缘态通过带隙从一个带转移到另一个带,并且在一个滑动周期内泵送的边缘态数等于带隙的滑动陈恩数。这种关系可以看作是莫尔双层系统中固有的体积-边缘对应关系的一种表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Moiré edge states in twisted bilayer graphene and their topological relation to quantum pumping
We study the edge states of twisted bilayer graphene and their topological origin. We show that the twisted bilayer graphene has special edge states associated with the moir\'{e} pattern, and the emergence of these moir\'{e} edge states is linked with the sliding Chern number, which describes topological charge pumping caused by relative interlayer sliding. When one layer of the twisted bilayer is relatively slid with respect to the other layer, the edge states are transferred from a single band to another across the band gap, and the number of the edge states pumped in a sliding cycle is shown to be equal to the sliding Chern number of the band gap. The relationship can be viewed as a manifestation of the bulk-edge correspondence inherent in moir\'{e} bilayer systems.
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