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Theory of ultrasonic dispersion in local phonon systems coupled with conduction electrons

机译:与传导电子耦合的局部声子系统中的超声弥散理论

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摘要

The physical origin of frequency dependence in elastic constants, which are often found in an ultrasound propagation in filled skutterudites and clathrate compounds, is investigated theoretically. This dependence arises front a coupling between the acoustic phonon and some optical phonons, which strongly interact with electrons. Using a self-consistent ladder approximation together with a pseudofermion mapping of the phonon to the single site Holstein Anderson model, a soft mode of the optical phonon at zero frequency is shown to emerge. The temperature dependence of the spectral weight of this soft mode shows an activation-type behavior, which is characterized by the optical phonon frequency. These features can generate the frequency dependence and the shoulder in the elastic constants observed in some filled skutterudites and clathrate compounds.
机译:理论上研究了弹性常数中频率相关性的物理起源,通常在填充的方钴矿和包合物中的超声传播中发现这种弹性。这种依赖性在声子和某些与电子强烈相互作用的光学声子之间产生耦合之前产生。使用自洽阶梯近似和声子到单个位点荷斯坦·安德森模型的伪费密映射,显示了在零频率处光子的软模。该软模式的光谱权重的温度依赖性显示出激活类型的行为,该行为的特征在于光学声子频率。这些特征可能会产生频率依赖性,并且会在某些填充的方钴矿和包合物中观察到弹性常数时的肩峰。

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