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Thermoelectric transport properties in 3D Dirac semimetal Cd3As2

机译:3D Dirac半型CD3As2中的热电传输特性

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Thermoelectric transport properties, namely, electrical conductivity, electronic thermal conductivity, and diffusion thermopower are theoretically investigated in 3D Dirac semimetal Cd3As2. We employ Boltzmann transport formalism and consider the electron scattering by charged impurities, short-range disorder, acoustic phonons, and optical phonons. The Boltzmann transport equation is solved using the Ritz iteration technique to obtain the first-order perturbation distribution function for the interaction of electrons with inelastic polar optical phonons scattering. The numerical results are presented in the temperature range 2-300 K with the electron concentration in the range (0.1-10) x 10(18) cm(-3). It is found that, at low temperature < similar to 70 K transport coefficients are dominated by charged impurity scattering and at higher temperature the phonon scattering is found to be dominant. The validity of Wiedemann-Franz law is examined. Recently observed experimental results are explained by our theory.
机译:在3D Dirac半型Cd3As2中理论上研究了热电传输性能,即导电性,电子导热率和扩散热电器。我们使用Boltzmann运输形式主义,并考虑带电杂质,短距离障碍,声学声子和光学声音的电子散射。使用RITZ迭代技术解决了Boltzmann传输方程,以获得用于与非弹性极性光学声子散射的电子相互作用的一阶扰动分布函数。数值结果在2-300k的温度范围内呈现,电子浓度在范围(0.1-10)×10(18)cm(-3)中。发现,在低温下,在低温<类似于70k的输送系数,通过电荷的杂质散射来支配,并且在更高的温度下发现声子散射是显性的。研究了Wiedemann-Franz法律的有效性。最近观察到的实验结果是我们的理论解释的。

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