Thermoelectric power in disordered mixed crystals

P. Lin-Chung, A. Rajagopal
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Abstract

In disordered mixed crystals the effect of alloy scattering is known to be of significant importance in comparison with that of lattice scattering in the consideration of electrical and thermal transport properties. In this work we consider the thermoelectric power in such isotropically disordered mixed crystals. We derive the energy current density operator for a combined electron and vibrating ions of the lattice system with the electron-lattice interaction term included. In this preliminary report, the relative importance of electrons and lattice vibrations to the thermoelectric power is discussed. The coherent potential approximation may be used to obtain the thermoelectric power of the disordered mixed crystal as function of the concentration. Our operator formulation is in coordinate space which besides containing previous formulations for metals and alloys as special cases, admits of the coherent-potential approximation methods to be applied as well.
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无序混合晶体中的热电功率
在无序混合晶体中,合金散射的影响在考虑电和热输运性质方面比晶格散射的影响更为重要。在这项工作中,我们考虑了这种各向同性无序混合晶体的热电功率。我们导出了包含电子-晶格相互作用项的晶格系统中电子和振动离子组合的能量电流密度算符。在这个初步报告中,讨论了电子和晶格振动对热电功率的相对重要性。用相干势近似可以得到无序混合晶体的热电功率随浓度的变化。我们的算符公式是在坐标空间中,除了包含先前的金属和合金的公式作为特殊情况外,还允许应用相干势近似方法。
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