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Transport through quantum spin Hall insulator/metal junctions in graphene ribbons

机译:通过石墨烯带中的量子自旋霍尔绝缘体/金属结传输

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摘要

Quantum spin Hall insulator/metal interfaces are formed in graphene ribbons with intrinsic spin-orbit coupling by selectively doping two regions creating a potential step. For a clean graphene ribbon, the transmission of the topological edge states through a n-n or p-p junction is perfect irrespective of the ribbon termination, width, and potential step parameters due to the orthogonality of incoming and outgoing edge channels. This is shown numerically for an arbitrary crystallographic orientation of the ribbon and proven analytically for zigzag and metallic armchair boundary conditions. In disordered ribbons, the orthogonality between left- and right-movers is in general destroyed and backscattering sets in. However, transmission approaches one by increasing the ribbon's width, even in the presence of strong edge roughness.
机译:量子自旋霍尔绝缘体/金属界面在石墨烯带中形成,具有固有的自旋轨道耦合性,这是通过有选择地掺杂两个区域以形成潜在台阶而实现的。对于干净的石墨烯碳带,由于传入和传出边缘通道的正交性,无论碳带终止,宽度和潜在的阶跃参数如何,通过n-n或p-p结传输拓扑边缘状态都是理想的。对于带的任意晶体学取向,用数字方式显示,并且对于之字形和金属扶手椅边界条件进行了分析证明。在无序的色带中,通常会破坏左右移动器之间的正交性,并建立反向散射。但是,即使存在强烈的边缘粗糙度,也可以通过增加色带的宽度来达到接近透射的目的。

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