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Phonon focusing and electron-phonon drag in semiconductor crystals with degenerate charge-carrier statistics

机译:具有简并电荷载流子统计的半导体晶体中的声子聚焦和电子声子拖曳

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We study the effect of anisotropy in elastic properties on the electron-phonon drag and thermoelectric phenomena in gapless semiconductors with degenerate charge-carrier statistics. It is shown that phonon focusing leads to a number of new effects in the drag thermopower at low temperatures, when diffusive phonon scattering from the boundaries is the predominant relaxation mechanism. We analyze the effect of phonon focusing on the dependences of the thermoelectromotive force (thermopower) in HgSe:Fe crystals on geometric parameters and the heat-flow directions relative to the crystal axes in the Knudsen regime of the phonon gas flow. The crystallographic directions that ensure the maximum and minimum values of the thermopower are determined and the role of quasi-longitudinal and quasi-transverse phonons in the drag thermopower in HgSe:Fe crystals at low temperatures is analyzed. It is shown that the main contribution to the drag thermopower comes from slow quasi-transverse phonons in the directions of focusing in long samples.
机译:我们用退化的载流子统计研究了各向异性对弹性性能对无间隙半导体中电子声子阻力和热电现象的影响。结果表明,当声子从边界的扩散声子散射是主要的弛豫机制时,在低温下,声子聚焦会导致阻力热功率产生许多新的效应。我们分析了声子在HgSe:Fe晶体中的热电动势(热功率)对几何参数和声子气流Knudsen态中相对于晶轴的热流方向的依赖性的影响。确定了确保最大和最小热功率值的晶体学方向,并分析了在低温下HgSe:Fe晶体中准纵向和准横向声子在拖动热功率中的作用。结果表明,对阻力热功率的主要贡献来自于在长样品聚焦方向上的慢准横声子。

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