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Study of Ultrasonic Attenuation in f-electron systems in the Paramagnetic limit of Coulomb Interaction

机译:Coulomb相互作用顺磁限制F电子系统超声衰减研究

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We report here a microscopic model study of ultrasonic attenuation in f-electron systems based on Periodic Anderson Model in which Coulomb interaction is considered within a mean-field approximation for a weak interaction. The Phonon is coupled to the conduction band and f-electrons. The phonon Green's function is calculated by Zubarev's technique of the Green's function method. The temperature dependent ultrasonic attenuation co-efficient is calculated from the imaginary part of the phonon self-energy in the dynamic and long wave length limit. Thef-electron occupation number is calculated self-consistently in paramagnetic limit of Coulomb interaction. The effect of the Coulomb interaction on ultrasonic attenuation is studied by varying the phonon coupling parameters to the conduction and f-electrons, hybridization strength, the position of f-level and the Coulomb interaction Strength. Results are discussed on the basis of experimental results.
机译:我们在此报告了基于周期性和谐模型的F电子系统超声衰减的微观模型研究,其中在弱相互作用的平均场逼近中考虑库仑相互作用。声子耦合到导带和F电子。音源绿色的功能是通过Zubarev的绿色功能方法技术计算的。温度依赖性超声衰减共同效率是从动态和长波长限制的主体自能的虚构部分计算的。在Coulomb相互作用的顺磁极限中,F-Electron占用号是自然的。通过改变声子耦合参数对传导和F电子,杂交强度,F级位置和库仑相互作用强度来研究Coulomb相互作用对超声衰减的影响。结果是在实验结果的基础上讨论的。

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