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Formation of nanoparticles by short and ultra-short laser pulses

机译:通过短和超短激光脉冲形成纳米颗粒

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The main objective of this study is to explain the experimental observations. To simulate material ablation, plume formation and its evolution, we developed a combined molecular dynamics (MD) and direct simulation Monte Carlo (DSMC) computational study of laser ablation plume evolution. The first process of the material ablation is described by the MD method. The expansion of the ejected plume is modelled by the DSMC method. To better understand the formation and the evolution of nanoparticles present in the plume, we first used separate MD simulations to analyse the evolution of a cluster in the presence of background gas with different properties (density, temperature). In particular, we examine evaporation and growth reactions of a cluster with different size and initial temperature. As a result of MD calculations, we determinate the influence of the background gas parameters on the nanoparticles. The reactions rates such as evaporation/condensation, which are obtained by MD simulations, are directly transferred to the DSMC part of our combined model. Finally, several calculations performed by using MD-DSMC model demonstrate both plume dynamics and longer-time cluster evolution. Calculations results are compared with experimental findings.
机译:本研究的主要目的是解释实验观察。为了模拟材料消融,羽状形成及其演化,我们开发了一种组合的分子动力学(MD)和直接仿真蒙特卡罗(DSMC)的激光消融羽流进化的计算研究。通过MD方法描述了材料消融的第一过程。弹出羽流的扩展由DSMC方法建模。为了更好地了解羽流中存在的纳米颗粒的形成和演变,我们首先使用单独的MD模拟来分析在具有不同性质(密度,温度)的背景气体存在下簇的演变。特别是,我们研究具有不同尺寸和初始温度的簇的蒸发和生长反应。由于MD计算,我们确定背景气体参数对纳米颗粒的影响。通过MD模拟获得的蒸发/冷凝等反应率直接转移到我们组合模型的DSMC部分。最后,通过使用MD-DSMC模型执行的几个计算展示了羽流动力学和长时间集群演变。将结果与实验结果进行比较。

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