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Optical absorption and delocalization in a quaternary tight-binding chain with correlated disorder

机译:季末末端链中的光学吸收和疏散性,具有相关疾病

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We study electronic transport in a one-dimensional model with four kinds of atoms. The quaternary energy distribution is chosen in such a way that it contains long-range correlations. Localization properties and optical absorption are obtained by using numerical methods. Regarding the localization properties of the wave function, we show numerically that, for weak correlation on disorder, the participation number is finite, and the eigenstates are localized. For strong correlation, our results suggest that the model displays fully delocalized eigenstates. Weakly localized states are present in the regime of intermediate correlations. Our analysis of the optical absorption showed an interesting pattern of peaks and a strong dependence on the correlation degree. The structure of peaks is discussed in the light of the underlying density of states. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们研究了用四种原子的一维模型中的电子传输。 选择季度能量分布,使其包含远程相关性。 通过使用数值方法获得定位性能和光学吸收。 关于波函数的定位特性,我们在数值上显示,为了弱与无序相关性,参与号是有限的,并且特征符是本地化的。 对于强烈的相关性,我们的结果表明该模型显示完全临近的特征。 弱局部化状态存在于中间相关的制度中。 我们对光学吸收的分析显示了峰的有趣模式和对相关程度的强烈依赖性。 根据状态的潜在密度讨论峰的结构。 (c)2017年Elsevier B.V.保留所有权利。

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