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The electronic structure of quasi-one-dimensional disordered systems with parallel multi-chains

机译:具有平行多链的准一维无序系统的电子结构

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For the quasi-one-dimensional disordered systems with parallel multi-chains, taking a special method to code the sites and just considering the nearest-neighbor hopping integral, we write the systems' Hamiltonians as precisely symmetric matrixes, which can be transformed into three diagonally symmetric matrixes by using the Householder transformation. The densities of states, the localization lengths and the conductance of the systems are calculated numerically using the minus eigenvalue theory and the transfer matrix method. From the results of quasi-one-dimensional disordered systems with varied chains, we find, the energy band of the systems extends slightly, the energy gaps are observed and the distribution of the density of states changes obviously with the increase of the dimensionality. Especially, for the systems with four, five or six chains, at the energy band center, there exist extended states whose localization lengths are greater than the size of the systems, accordingly, there having great conductance. With the increasing of the number of the chains, the correlated ranges expand and the systems present the similar behavior to that with off-diagonal long-range correlation. (c) 2006 Elsevier B.V. All rights reserved.
机译:对于具有平行多链的准一维无序系统,采用一种特殊的方法对位点进行编码,并仅考虑最近邻跳变积分,我们将系统的哈密顿量写为精确对称矩阵,可以将其转化为三个使用Householder变换的对角对称矩阵。利用负特征值理论和传递矩阵方法,数值计算了系统的状态密度,定位长度和电导率。从具有变化链的准一维无序系统的结果,我们发现,系统的能带略有扩展,能隙被观察到,并且随着密度的增加,状态密度的分布也发生了明显的变化。特别是,对于在能带中心具有四,五或六链的系统,存在扩展状态,其定位长度大于系统的大小,因此,具有很大的电导率。随着链数的增加,相关范围扩大,并且系统呈现出与非对角远程相关的相似行为。 (c)2006 Elsevier B.V.保留所有权利。

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