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A simple molecular orbital treatment of current distributions in quantum transport through molecular junctions

机译:一种简单的分子轨道处理电流分布通过分子交叉点的量子分布

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摘要

A simple molecular orbital treatment of local current distributions inside single molecular junctions is developed in this paper. Using the first-order perturbation theory and nonequilibrium Green’s function techniques in the framework of Hückel theory, we show that the leading contributions to local current distributions are directly proportional to the off-diagonal elements of transition density matrices. Under the orbital approximation, the major contributions to local currents come from a few dominant molecular orbital pairs which are mixed by the interactions between the molecule and electrodes. A few simple molecular junctions consisting of single- and multi-ring conjugated systems are used to demonstrate that local current distributions inside molecular junctions can be decomposed by partial sums of a few leading contributing transition density matrices.
机译:本文开发了单分子交叉区内局部电流分布的简单分子轨道处理。 在Hückel理论框架中使用一阶扰动理论和非QuiLibium绿色功能技术,我们表明对局部电流分布的主要贡献与转换密度矩阵的偏差元素成正比。 在轨道近似下,对局部电流的主要贡献来自几个主要分子轨道对,其通过分子和电极之间的相互作用而混合。 由单环共轭系统组成的一些简单的分子交叉点用于证明分子交叉口内部的局部电流分布可以通过少数主要贡献过渡密度矩阵的部分和分解。

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