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Efficient partitioning of surface Green’s function: toward ab initio contact resistance study.

机译:有效划分表面Green的功能:从头开始进行接触电阻研究。

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In this work, we propose an efficient computational scheme for first-principle quantum transport simulations to evaluate the open-boundary conditions. Its partitioning differentiates from conventional methods in that the contact self-energy matrices are constructed on smaller building blocks, principal layers (PL), while conventionally it was restricted to have the same lateral dimensions of the adjoining atoms in a channel region. Here, we obtain the properties of bulk electrodes through non-equilibrium Green’s function (NEGF) approach with significant improvements in the computational efficiency without sacrificing the accuracy of results. To exemplify the merits of the proposed method we investigate the carrier density dependency of contact resistances in silicon nanowire devices connected to bulk metallic contacts.
机译:在这项工作中,我们为第一原理量子传输模拟提出了一种有效的计算方案,以评估开放边界条件。它的划分与常规方法的区别在于,接触自能矩阵是在较小的构造块,主层(PL)上构建的,而按常规,它被限制为在通道区域中具有相邻原子的相同横向尺寸。在这里,我们通过非平衡格林函数(NEGF)方法获得了块状电极的性能,并在不牺牲结果准确性的情况下大大提高了计算效率。为了举例说明所提出方法的优点,我们研究了连接到体金属触点的硅纳米线器件中接触电阻的载流子密度依赖性。

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