Longitudinal-phonon relaxation mechanisms in cubic crystals of germanium, silicon, and diamond

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作者
I. G. Kuleev
I. I. Kuleev
机构
[1] Russian Academy of Sciences,Institute of Metal Physics, Ural Division
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Spectroscopy; Silicon; State Physics; Elastic Modulus; Wave Vector;
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摘要
The relaxation rates of thermal and high-frequency longitudinal phonons are calculated using an anisotropic-continuum model. Three-phonon scattering mechanisms (L ↔ L + L, L ↔ T + L) for the phonon relaxation are considered. Anisotropic anharmonic phonon scattering in cubic crystals is described in terms of the second-and third-order elastic moduli. The parameters determining the longitudinal-phonon relaxation rates are found for germanium, silicon, and diamond crystals. The long-wavelength limit and the transition to the isotropic-medium model are considered, and the dependences of the relaxation rates of thermal and high-frequency phonons on temperature and phonon wave vector are analyzed for these crystals.
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页码:312 / 323
页数:11
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