A divide-and-conquer method to improve performance in quantum transport calculations: conductance in rotated graphene nanoribbons side-contact junctions

IF 2.9 Q3 CHEMISTRY, PHYSICAL
M. J. Rodríguez, Carlos Ramírez
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引用次数: 0

Abstract

We propose a divide-and-conquer algorithm to find recursively the scattering matrix of general tight-binding structures. The scattering matrix allows a direct calculation of transport properties in mesoscopic systems by using the Landauer formula. The method is exact, and by analyzing the performance of the algorithm in square, triangular and honeycomb lattices, we show a significant improvement in comparison to other state-of-the-art recursive and non-recursive methods. We utilize this algorithm to compute the conductance of a rotated graphene nanoribbon side-contact junction, revealing that for electrons with energies smaller than −2.7 eV the transmission function depends negligibly on the angle of the junction, whereas for electrons with energies greater than −2.7 eV, there exists a set of angles for the system that increase its conductance independently of the energy of the particles.
一种提高量子输运计算性能的分而治之的方法:旋转石墨烯纳米带侧面接触结中的电导
我们提出了一种递推求解一般紧束缚结构散射矩阵的分治算法。散射矩阵允许使用Landauer公式直接计算介观系统中的输运性质。该方法是精确的,通过分析该算法在正方形、三角形和蜂窝格中的性能,与其他最先进的递归和非递归方法相比,我们显示出显著的改进。我们利用该算法计算了旋转石墨烯纳米带侧接触结的电导,揭示了对于能量小于-2.7eV的电子,传输函数可忽略地取决于结的角度,而对于能量大于-2.7eV的电子,系统存在一组角度,这些角度独立于粒子的能量来增加其电导。
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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来源期刊
CiteScore
3.70
自引率
11.50%
发文量
46
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