论文标题

石墨烯系统中的全电山谷过滤(II):谷阀中电子传输的数值研究

All-electrical valley filtering in graphene systems (II): Numerical study of electron transport in valley valves

论文作者

Jiang, Jia-Huei, Lue, Ning-Yuan, Chen, Feng-Wu, Wu, Yu-Shu G.

论文摘要

这项工作通过Valleytronics的基本逻辑门进行了电子传输的数值研究 - 山谷阀由两个或增加数量的山谷过滤器组成。研究了对运输的各种典型影响,例如由于界面散射,长距离和短范围杂质散射,边缘粗糙度,应变,滤波器间间距或增加数量的山谷过滤器而引起的。为了进行说明,我们考虑了单层或双层石墨烯的石墨烯量子线谷过滤器构建的特定阀等级,其过滤器可能会单独控制面内横向电场。石墨烯的最接近的邻居紧密结合模型用于制定相应的传输问题,并将递归绿色功能方法的算法用于求解相应的传输系数。在两滤阀的情况下,结果明确证明了在两个阀的两个配置之间存在明显的电子传输中的明显的on-Ow-Off对比度,即,一个具有相同的阀门,另一个在两个组成滤波器中具有相反的山谷极性。当增加阀中的过滤器数量时,该对比度显示出增强。说明了与界面散射和过滤器间距有关的Fano-Fabry-Perot类型共振的签名。由于杂质引起的电子反向散射受到相当大的抑制作用,因此阀的性能显示出相当可靠的稳健性,以对边缘粗糙度散射。另一方面,单轴菌株的存在会改变电子传输,并随着应变强度的变化而导致有趣的准周期性调节。

This work performs a numerical study of electron transport through the fundamental logic gate in valleytronics - a valley valve consisting of two or increasing number of valley filters. Various typical effects on the transport are investigated, such as those due to interface scattering, long- and short- range impurity scattering, edge roughness, strain, inter-filter spacing, or increasing number of valley filters. For illustration, we consider the class of specific valves built from graphene quantum wire valley filters in single layer or bilayer graphene, with the filters subject to separate control of in-plane, transverse electric fields. The nearest-neighbor tight-binding model of graphene is used to formulate the corresponding transport problem, and the algorithm of recursive Green's function method is applied to solve for the corresponding transmission coefficient. In the case of two-filter valves, the result explicitly demonstrates the existence of a pronounced on-off contrast in electron transmission between the two configurations of valves, namely, one with identical and the other with opposite valley polarities in the two constituent filters. The contrast is shown to be enhanced when increasing the number of filters in valves. Signatures of Fano-Fabry-Perot type resonances in association with interface scattering and inter-filter spacing are illustrated. Electron backscattering due to impurities is found to be sizably suppressed, with the valve performance showing considerable robustness against edge roughness scattering. On the other hand, the presence of a uniaxial strain modifies the electron transmission and results in an interesting quasi-periodic modulation of transmission as we vary the strain strength.

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