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Monte Carlo Study of Phonon Heat Conduction in Silicon Thin Films Including Contributions of Optical Phonons

机译:蒙特卡洛研究硅薄膜中声子导热的研究,包括光学声子的贡献

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The Monte Carlo method has found prolific use in the solution of the Boltzmann transport equation for phonons for the prediction of nonequilibrium heat conduction in crystalline thin films. This paper contributes to the state-of-the-art by performing a systematic study of the role of the various phonon modes on thermal conductivity predictions, in particular, optical phonons. A procedure to calculate three-phonon scattering time-scales with the inclusion of optical phonons is described and implemented. The roles of various phonon modes are assessed. It is found that transverse acoustic (TA) phonons are the primary carriers of energy at low temperatures. At high temperatures (T>200 K), longitudinal acoustic (LA) phonons carry more energy than TA phonons. When optical phonons are included, there is a significant change in the amount of energy carried by various phonons modes, especially at room temperature, where optical modes are found to carry about 25% of the energy at steady state in silicon thin films. Most importantly, it is found that inclusion of optical phonons results in better match with experimental observations for silicon thin-film thermal conductivity. The inclusion of optical phonons is found to decrease the thermal conductivity at intermediate temperatures (50-200 K) and to increase it at high temperature (>200 K), especially when the film is thin. The effect of number of stochastic samples, the dimensionality of the computational domain (two-dimensional versus three-dimensional), and the lateral (in-plane) dimension of the film on the statistical accuracy and computational efficiency is systematically studied and elucidated for all temperatures.
机译:蒙特卡罗方法已在声子的玻尔兹曼输运方程的解中大量用于预测晶体薄膜中的非平衡热传导。本文通过对各种声子模式(特别是光学声子)在热导率预测中的作用进行系统的研究,为最新技术做出了贡献。描述并实现了一种计算三声子散射时标并包含光学声子的过程。评估了各种声子模式的作用。发现横向声(TA)声子是低温下能量的主要载体。在高温(T> 200 K)下,纵向声(LA)声子比TA声子携带更多的能量。当包括光学声子时,各种声子模式所携带的能量有显着变化,尤其是在室温下,在室温下,发现硅薄膜中的光学模式在稳态下可以携带约25%的能量。最重要的是,发现包含光子会更好地与硅薄膜热导率的实验观察结果相匹配。发现包含光学声子会降低中温(50-200 K)时的导热率,而在高温(> 200 K)时会提高导热率,尤其是当薄膜很薄时。系统地研究并阐明了随机样本数量,计算域的尺寸(二维与三维)以及胶片的横向(平面内)尺寸对统计精度和计算效率的影响,并阐明了温度。

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