Kletsov Aleksey, Dahnovsky Yuri, Ortiz J V
Department of Physics and Astronomy/3905, University of Wyoming, Laramie, Wyoming 82071, USA.
J Chem Phys. 2007 Apr 7;126(13):134105. doi: 10.1063/1.2713743.
A novel computational method for a surface Green's function matrix is introduced for the calculation of electrical current in molecular wires. The proposed nonrecursive approach includes an infinite number of principal layers and yields the second-order matrix equation for the transformed Green's function matrix. The solution is found by the direct diagonalization of the auxiliary matrix without any iteration process. As soon as complex roots of the auxiliary matrix (approximately GS) are calculated, the gaps and the bands in the surface electronic structure are found. It is shown that the solution of a second-order matrix equation determines the spectral density matrix, that is, the density of states for noninteracting electrons. Single and double principal layer models are studied both analytically and numerically. The energy interval for nonvanishing spectral matrices is determined. This method is applicable to matrices of any rank.
本文介绍了一种用于计算分子导线中电流的新型表面格林函数矩阵计算方法。所提出的非递归方法包括无限多个主层,并给出了变换后的格林函数矩阵的二阶矩阵方程。通过辅助矩阵的直接对角化找到解,无需任何迭代过程。一旦计算出辅助矩阵(近似为GS)的复根,就可以找到表面电子结构中的能隙和能带。结果表明,二阶矩阵方程的解决定了谱密度矩阵,即非相互作用电子的态密度。对单主层和双主层模型进行了分析和数值研究。确定了非零谱矩阵的能量区间。该方法适用于任何秩的矩阵。