Transport analysis of graphene-based devices with width discontinuities

P. Marconcini, M. Macucci
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引用次数: 1

Abstract

We have developed a code for the simulation of graphene-based devices consisting of cascaded armchair sections with width discontinuities, in the presence of a generic potential landscape. This is based on a scattering-matrix approach and on the solution of the Dirac equation in the reciprocal space. The presence of width discontinuities requires a particular treatment of the continuity equation for the wave function on the two inequivalent sublattices. Validation has been performed via a comparison with the results of a tight-binding calculation, for a sample with a size small enough to be amenable to this latter approach. Our method can be applied to graphene devices with a size up to a few microns, which is computationally prohibitive for tight-binding techniques.
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宽度不连续石墨烯基器件的输运分析
我们开发了一种代码,用于模拟基于石墨烯的设备,该设备由具有宽度不连续的级联扶手椅部分组成,存在一般的潜在景观。这是基于散射矩阵方法和在互反空间中的狄拉克方程的解。宽度不连续的存在要求对两个不等价子格上的波函数的连续性方程进行特殊处理。通过与紧绑定计算结果的比较来执行验证,对于尺寸足够小的样本,可以采用后一种方法。我们的方法可以应用于尺寸高达几微米的石墨烯器件,这对于紧密结合技术来说在计算上是禁止的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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