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Auxiliary coherent medium theory for lattice vibrations in random binary alloys with mass and force-constant disorders

机译:具有质量和力恒定疾病随机二元合金中的晶格振动的辅助相干介质理论

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摘要

The inevitable and random impurities or defects can significantly influence the lattice-vibrational properties of materials and devices. Thus, the capability of effectively treating disorder effects is indispensable for theoretical simulations. In this paper, we report an auxiliary coherent medium theory, in the framework of multiple scattering theory, to simulate disordered vibrational systems containing both mass and force-constant disorders. In this method, the physical Green's function is related to an auxiliary Green's function by introducing a separable force-constant model to describe disordered systems. As an important result, the force-constant disorder can be transformed to a diagonal-like disorder in the auxiliary Hamiltonian while maintaining the important force-constant sum rule. In combination with the single-site and cluster coherent potential approximation, the configurational average over the auxiliary Green's function can be performed to obtain the configuration-averaged physical properties. To demonstrate the effectiveness of this method, we apply it to a one-dimensional harmonic chain with atomic disorders and find our calculations agree very well with the exact results for a wide range of mass and force constants. Moreover, we show that the phonon transport property of disordered devices can be derived based on the auxiliary Green's function formalism in combination with vertex corrections. The auxiliary coherent medium theory features easy implementation and feasible incorporation with diagrammatic technique in many-body perturbation and various cluster approximations, providing an important approach to analyze disorder effects on the vibrational properties. Moreover, it is also straightforward to apply the present formalism to treat the general atomic disorder in electronic systems.
机译:不可避免的和随机的杂质或缺陷可以显着影响材料和器件的晶格振动性能。因此,有效治疗病症效应的能力对于理论模拟是必不可少的。在本文中,我们在多散射理论的框架中报告了辅助相干介质理论,以模拟含有质量和力恒定病症的无序振动系统。在该方法中,通过引入可分离的力常数模型来描述无序系统,物理绿色的功能与辅助绿色的功能有关。作为一个重要结果,可以在保持重要的力恒定规则的同时转化为辅助汉密尔顿中的对角线状病症。结合单站点和集群相干电位近似,可以执行辅助绿色功能的配置平均值以获得配置平均物理属性。为了证明这种方法的有效性,我们将其应用于具有原子紊乱的一维谐波链,并发现我们的计算非常适合具有各种质量和力常数的确切结果。此外,我们表明,可以基于辅助绿色的功能形式主义与顶点校正组合的辅助绿色功能形式主义来导出无序器件的声子传输性。辅助相干介质理论具有易于实现和可行的掺入型技术,在许多身体扰动和各种簇近似下,提供了一种分析对振动性能的紊乱影响的重要方法。此外,应用当前形式主义以治疗电子系统中的一般原子疾病也是直接的。

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  • 来源
    《Physical review》 |2019年第13期|134202.1-134202.9|共9页
  • 作者单位

    ShanghaiTech Univ Sch Phys Sci & Technol Shanghai 201210 Peoples R China;

    ShanghaiTech Univ Sch Phys Sci & Technol Shanghai 201210 Peoples R China;

    ShanghaiTech Univ Sch Phys Sci & Technol Shanghai 201210 Peoples R China;

    ShanghaiTech Univ Sch Phys Sci & Technol Shanghai 201210 Peoples R China;

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