Magnetic Field Effects on Charge and Current Density in Finite Monolayer Graphene

Carlos José Paez Gonzalez, Jorge Hernan Quintero Orozco, Andrés Camilo García Castro
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Abstract

In this work, we study the effects of an external magnetic field on the charge and current density in finite monolayer graphene, i.e., with zig-zag and armchair edges. We use the tight-binding model to include the effects of the magnetic field and the effect of the edges. By using the transmission probability and analyzing the local density of states (charge density) ob- tained from Green’s function method, we find an energy region where the wave functions are more localized in the edges and, consequently, the current flow across the borders. On the other hand, for energies close to Landau levels, the charge and current density are localized on the bulk of the system.
磁场对有限单层石墨烯中电荷和电流密度的影响
在这项工作中,我们研究了外部磁场对有限单层石墨烯中电荷和电流密度的影响,即具有之字形和扶手椅边缘。我们使用紧密结合模型来考虑磁场的影响和边缘的影响。通过利用传输概率和分析由格林函数法得到的局部态密度(电荷密度),我们发现了一个能量区域,波函数更局部化在边缘,因此电流流过边界。另一方面,对于接近朗道能级的能量,电荷和电流密度都局限在系统的主体上。
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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