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石墨烯超晶格中的边缘模式与非局域电导率

Edge Modes and Nonlocal Conductance in Graphene Superlattices.

作者信息

Brown Rory, Walet Niels R, Guinea Francisco

机构信息

School of Physics and Astronomy, University of Manchester, Manchester M13 9PY, United Kingdom.

Imdea Nanoscience, Faraday 9, 28015 Madrid, Spain.

出版信息

Phys Rev Lett. 2018 Jan 12;120(2):026802. doi: 10.1103/PhysRevLett.120.026802.

Abstract

We study the existence of edge modes in gapped moiré superlattices of graphene monolayer ribbons on a hexagonal boron nitride substrate. We find that the superlattice bands acquire finite Chern numbers, which lead to a valley Hall effect. The presence of dispersive edge modes is confirmed by calculations of the band structure of realistic nanoribbons using tight binding methods. These edge states are only weakly sensitive to disorder, as short-range scattering processes lead to mean free paths of the order of microns. The results explain the existence of edge currents when the chemical potential lies within the bulk superlattice gap, and offer an explanation for existing nonlocal resistivity measurements in graphene ribbons on boron nitride.

摘要

我们研究了在六方氮化硼衬底上的单层石墨烯带的带隙莫尔超晶格中边缘模式的存在情况。我们发现超晶格能带获得了有限的陈数,这导致了谷霍尔效应。通过使用紧束缚方法计算实际纳米带的能带结构,证实了色散边缘模式的存在。这些边缘态对无序仅具有微弱的敏感性,因为短程散射过程导致的平均自由程约为微米量级。这些结果解释了当化学势处于体超晶格能隙内时边缘电流的存在,并为氮化硼上石墨烯带中现有的非局部电阻率测量提供了解释。

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