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Phonon spectrum and phonon focusing in coarse-grained atomistic simulations

机译:位光谱和声子聚焦在粗粒粒子原子模拟中

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摘要

This work investigates the accuracy, efficiency, and applicability of coarse-grained (CG) atomistic methods in simulation of phonon dynamics. First, we compute and compare phonon dispersion relations in CG models with those in atomically resolved models, using the concurrent atomistic-continuum (CAC). The CG atomistic models using the CAC method are shown to reproduce long-wavelength phonons with great accuracy, while capturing the dynamics of some short-wavelength phonons that are usually inaccessible to CG methods. We then present CG simulation results of the propagation of heat pulses in Si with the interaction between atoms being modelled with the Stillinger-Weber potential; the experimentally observed phonon-focusing patterns in the (1 0 0) and (1 1 1) planes of Si crystals are reproduced. The accuracy and efficiency of the CAC method in CG simulation of acoustic and optical phonon branches are quantified with respect to atomically-resolved molecular dynamics simulations. The applicability and limitations of concurrent multiscale methods in the simulation of phonon transport across atomistic-continuum interface are investigated. Possible ways to overcome the limitations are discussed.
机译:该工作调查了粗粒(CG)原子方法在仿真动力学模拟中的准确性,效率和适用性。首先,使用并发原子连续体(CAC)计算和比较CG模型中CG模型中的CG模型中的声子色散关系。使用CAC方法的CG原型模型以极高的精度再现长波长声子,同时捕获通常无法访问CG方法的短波长声子的动态。然后,我们存在CG仿真结果,在Si中的热脉冲传播的结果与Syperinger-Weber潜力建模的原子之间的相互作用;经过实验观察到(10 0)和(111)平面的Si晶体中的关键字聚焦图案被再现。关于原子分辨分子动力学模拟量化声学和光学声子分支的CG模拟中CAC方法的准确性和效率。研究了并发多尺度方法在原子连续界面仿真仿真模拟中的适用性和限制。讨论了克服局限性的可能方法。

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