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Experimental verification of a radiative model of laser-induced plasma expanding into vacuum

机译:激光诱导的等离子体扩展为真空的辐射模型的实验验证

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摘要

A radiation dynamic model of the postbreakdown stage of laser-induced plasma solves a twofold task: first, the direct problem, it yields an analytical expression for the plasma radiation dynamics under arbitrarily chosen initial conditions allowing the computation of synthetic spectra; second, the inverse problem, it allows finding of the initial conditions by a direct comparison of calculated synthetic spectra with experimentally measured ones. In this work, we carry out experimental verification of the model, thus dealing with the inverse problem. We vary the initial parameters of the model (plasma initial temperature and the initial concentrations of species) until a close fit between the synthetic and the experimental spectrum is obtained. Some of the model inputs (e.g., the initial radius of the plasma) are measured and introduced into the model as fixed constants. Calculations and measurements are performed on a binary SiC system; on a series of multicomponent aluminum samples doped with Si, Mg, Cu, Zn, and Fe; and on pure iron, silicon, and carbon. From two to six elements and up to 500 spectral lines were involved in the calculations. The Monte Carlo optimization (the simulated annealing method) is used for finding initial plasma temperature and number densities. A reasonably good agreement is obtained between the computed and the experimental spectra. This approach can be considered as a valuable step towards the achievement of absolute analysis. (c) 2004 Published by Elsevier B.V.
机译:激光诱导等离子体分解后阶段的辐射动力学模型解决了双重任务:首先是直接问题,它为任意选择的初始条件下的等离子体辐射动力学提供了解析表达式,从而可以计算合成光谱;第二,逆问题,它可以通过将计算出的合成光谱与实验测量的光谱直接比较来找到初始条件。在这项工作中,我们对模型进行了实验验证,从而解决了逆问题。我们更改模型的初始参数(血浆初始温度和物种的初始浓度),直到获得合成光谱与实验光谱之间的紧密匹配为止。测量一些模型输入(例如,等离子体的初始半径)并将其作为固定常数引入到模型中。计算和测量在二元SiC系统上进行;在一系列掺杂有Si,Mg,Cu,Zn和Fe的多组分铝样品上;以及纯铁,硅和碳。计算中涉及2到6个元素和多达500条谱线。蒙特卡洛优化(模拟退火方法)用于查找初始等离子体温度和数量密度。在计算光谱和实验光谱之间获得了相当好的一致性。可以将这种方法视为实现绝对分析的重要一步。 (c)2004年由Elsevier B.V.

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