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Phonon localization in binary alloys with diagonal and off-diagonal disorder: A cluster Green's function approach

机译:具有对角线和非对角线无序的二元合金中的声子定位:簇格林函数方法

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摘要

We report the development and application of a method for carrying out computational investigations of the effects of mass and force-constant (FC) disorder on phonon spectra. The method is based on the recently developed typical medium dynamical cluster approach, which is a Green's function approach. Excellent quantitative agreement with previous exact diagonalization results establishes the veracity of the method. Application of the method to a model system of binary mass and an FC-disordered system leads to several findings. A narrow resonance, significantly below the van Hove singularity, that has been termed the boson peak, is seen to emerge for low soft particle concentrations. We show, using the typical phonon spectrum, that the states constituting the boson peak cross over from being completely localized to being extended as a function of increasing soft particle concentration. In general, an interplay of mass and FC disorder is found to be cooperative in nature, enhancing phonon localization over all frequencies. However, for a certain range of frequencies, and depending on material parameters, FC disorder can delocalize the states that were localized by mass disorder, and vice versa. Modeling vacancies as weakly bonded sites with vanishing mass, we find that vacancies, even at very low concentrations, are extremely effective in localizing phonons. Thus, inducing vacancies is proposed as a promising route for efficient thermoelectrics. Finally, we use model parameters corresponding to the alloy system, Ni1-xPtx. and we show that mass disorder alone is insufficient to explain the pseudogap in the phonon spectrum; the concomitant presence of FC disorder is necessary.
机译:我们报告的发展和应用的方法进行对声子谱的质量和力常数(FC)混乱的影响进行计算研究。该方法基于最近开发的典型的介质动力学聚类方法,这是格林函数方法。与先前精确的对角化结果的优异定量一致性建立了该方法的准确性。该方法在二元质量模型系统和FC无序系统中的应用导致了一些发现。对于低的软颗粒浓度,出现了一个明显低于范霍夫奇点的窄共振,该共振被称为玻色子峰。我们使用典型的声子光谱显示,构成玻色子峰的状态从完全局限到扩展,随着软粒子浓度的增加而扩展。通常,质量与FC障碍的相互作用在本质上是合作的,从而增强了声子在所有频率上的定位。但是,对于一定范围的频率,并取决于材料参数,FC紊乱会使由质量紊乱局限的状态离域,反之亦然。将空位建模为质量逐渐消失的弱结合点,我们发现,即使在非常低的浓度下,空位在声子定位中也非常有效。因此,诱导空位被提议为有效热电的有希望的途径。最后,我们使用与合金体系Ni1-xPtx相对应的模型参数。并且我们证明仅质量失调不足以解释声子谱中的假间隙;并发FC障碍是必要的。

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  • 来源
    《Physical review》 |2019年第13期|134203.1-134203.11|共11页
  • 作者单位

    Jawaharlal Nehru Ctr Adv Sci Res, Bangalore 560064, Karnataka, India;

    Oak Ridge Natl Lab, Ctr Nanophase Mat Sci, POB 2009, Oak Ridge, TN 37831 USA|Oak Ridge Natl Lab, Computat Sci & Engn Div, POB 2009, Oak Ridge, TN 37831 USA;

    Louisiana State Univ, Baton Rouge, LA 70803 USA;

    Jawaharlal Nehru Ctr Adv Sci Res, Bangalore 560064, Karnataka, India;

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