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SCATTERING OF PHONONS BY NANO AND MICRO PARTICLES

机译:纳米和微粒子对声子的散射

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Scattering theory for the scattering of phonons by particulate scatterers is developed in this paper. Recently the author introduced the generalized equation of phonon radiative transport (GEPRT) in paniculate media which included a phase function to account for the anisotropic scattering of phonons by particulate scatterer. Solution of the GEPRT showed that scattering cross section is different than the thermal transport cross section. In this paper formulations for the scattering and transport cross section for horizontally shear (SH) wave phonon or transverse wave phonon without mode conversion is developed. The development of the theory of scattering and the transport cross section is exactly analogous to the Mie scattering theory for photon transport in particulate media. Results show that transport cross section is very different than the scattering cross section. It is also shown that for SH (horizontally shear) phonons the scattering and transport cross sections are proportional to ω~8 rather than the well accepted value of ω~4 in the Rayleigh regime where ω is the frequency of the SH phonons . The theory of phonon scattering developed in this paper will be useful for the predictive modeling of thermal conductivity of practical systems such as nano composites, nano-micro particle laden systems and etc.
机译:本文研究了声子被粒子散射体散射的散射理论。最近,作者介绍了在微粒介质中的声子辐射传输的广义方程(GEPRT),该方程包括一个相位函数,以解释声子被粒子散射体的各向异性散射。 GEPRT的解决方案表明,散射截面与热传递截面不同。在本文中,开发了无模式转换的水平剪切声子或横波声子的散射和传输截面的公式。散射和传输截面理论的发展与用于粒子介质中光子传输的Mie散射理论完全相似。结果表明,传输截面与散射截面截然不同。还显示出,对于SH(水平剪切)声子,散射截面和传输截面与ω〜8成正比,而不是在瑞利体制中公认的ω〜4值,其中ω是SH声子的频率。本文开发的声子散射理论将对实际系统的热导率预测模型有用,例如纳米复合材料,纳米微粒负载系统等。

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