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Phonon Self-Energy and Origin of Anomalous Neutron Scattering Spectra in SnTe and PbTe Thermoelectrics

机译:SnTe和PbTe热电材料中的声子自能和中子散射光谱的起源

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摘要

The anharmonic lattice dynamics of rock-salt thermoelectric compounds SnTe and PbTe are investigated with inelastic neutron scattering (INS) and first-principles calculations. The experiments show that, surprisingly, although SnTe is closer to the ferroelectric instability, phonon spectra in PbTe exhibit a more anharmonic character. This behavior is reproduced in first-principles calculations of the temperature-dependent phonon self-energy. Our simulations reveal how the nesting of phonon dispersions induces prominent features in the self-energy, which account for the measured INS spectra and their temperature dependence. We establish that the phase space for three-phonon scattering processes, combined with the proximity to the lattice instability, is the mechanism determining the complex spectrum of the transverse-optic ferroelectric mode.
机译:利用非弹性中子散射(INS)和第一性原理研究了盐岩热电化合物SnTe和PbTe的非谐晶格动力学。令人惊讶的是,实验表明,尽管SnTe更接近铁电不稳定性,但PbTe中的声子谱却表现出更加非谐的特性。这种行为在与温度有关的声子自能的第一性原理计算中得到了再现。我们的模拟揭示了声子分散体的嵌套如何在自能量中引起突出特征,这解释了实测的INS光谱及其温度依赖性。我们建立了三声子散射过程的相空间,再加上与晶格不稳定性的接近,是确定横向光学铁电模式的复谱的机制。

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