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首页> 外文期刊>The Journal of Chemical Physics >Electron transport in open systems from finite-size calculations: Examination of the principal layer method applied to linear gold chains
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Electron transport in open systems from finite-size calculations: Examination of the principal layer method applied to linear gold chains

机译:有限尺寸计算在开放系统中的电子传输:检验适用于线性金链的主层方法

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摘要

We describe the occurrence of computational artifacts when the principal layer method is used in combination with the cluster approximation for the calculation of electronic transport properties of nanostructures. For a one-dimensional gold chain, we observe an unphysical band in the band structure. The artificial band persists for large principal layers and for large buffer sizes. We demonstrate that the assumption of equality between Hamiltonian elements of neighboring layers is no longer valid and that a discontinuity is introduced in the potential at the layer transition. The effect depends on the basis set. When periodic boundary conditions are imposed and the k-space sampling is converged, the discontinuity disappears and the principal layer method can be correctly applied by using a linear combination of atomic orbitals as basis set. (c) 2008 American Institute of Physics.
机译:当主层方法与聚类近似结合用于计算纳米结构的电子传输性能时,我们描述了计算假象的发生。对于一维金链,我们在能带结构中观察到非物理带。对于较大的主要层和较大的缓冲区大小,人造带仍然存在。我们证明相邻层的哈密顿元素之间相等的假设不再有效,并且在层过渡时势能中引入了不连续性。效果取决于基础集。当施加周期性边界条件并且k空间采样收敛时,不连续性消失,并且可以通过使用原子轨道的线性组合作为基础集来正确地应用主层方法。 (c)2008年美国物理研究所。

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