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Benchmarking the performance of density functional theory based Green’s function formalism utilizing different self-energy models in calculating electronic transmission through molecular systems

机译:利用不同的自能模型计算基于分子系统的电子传输,基于密度泛函理论的格林函数形式的性能基准

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摘要

Electronic transmission through a metal-molecule-metal system is calculated by employing a Green’s function formalism in the scattering based scheme. Self-energy models representing the bulk and the potential bias are used to describe electron transport through the molecular system. Different self-energies can be defined by varying the partition between device and bulk regions of the metal-molecule-metal model system. In addition, the self-energies are calculated with different representations of the bulk through its Green’s function. In this work, the dependence of the calculated transmission on varying the self-energy subspaces is benchmarked. The calculated transmission is monitored with respect to the different choices defining the self-energy model. In this report, we focus on one-dimensional model systems with electronic structures calculated at the density functional level of theory.
机译:通过在基于散射的方案中采用格林函数形式主义来计算通过金属-分子-金属系统的电子传输。代表体积和势能偏差的自能模型用于描述电子通过分子系统的传输。通过改变金属-分子-金属模型系统的器件和主体区域之间的划分,可以定义不同的自能。此外,还可以通过其格林函数以不同的体积表示来计算自能量。在这项工作中,以计算的透射率对改变自能量子空间的依赖性为基准。相对于定义自能量模型的不同选择来监视计算的传输。在本报告中,我们重点关注一维模型系统,该模型具有在理论密度函数水平上计算的电子结构。

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