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Multiple-scattering effects in laser ablation plume propagation in gases

机译:气体中激光烧蚀羽流传播中的多重散射效应

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摘要

Langmuir probe technique has been employed to characterize the dynamics of UV laser ablation plasma ions from a silver target in different background gases (He, Ne, Ar and Xe). For all these gases the ion time-of-flight signals show progressive formation of a slower component as the gas pressure is increased. In the case of heavier gases (Ar and Xe) this slower component is clearly resolved from the vacuum peak (plume splitting), as has been previously reported. The pressure variation of the collected ion yield deviates markedly from a simple exponential decay, and a new approach, based on multiple-elastic-scattering processes, has been developed to describe these results as well as to provide elastic collision cross-sections which were previously not available. For the heavier gases, it has been possible to analyze the two ion components separately, and to estimate both the elastic collision cross-sections and the scattering order for the different gases.
机译:Langmuir探针技术已被用于表征在不同背景气体(He,Ne,Ar和Xe)中来自银靶的UV激光烧蚀等离子体离子的动力学。对于所有这些气体,随着气压的增加,离子飞行时间信号显示出逐渐形成了较慢的组分。如先前所报道的,在较重的气体(Ar和Xe)的情况下,该较慢的成分可以从真空峰(气雾分裂)中明显分辨出来。所收集的离子产量的压力变化明显不同于简单的指数衰减,并且已经开发出一种基于多重弹性散射过程的新方法来描述这些结果并提供以前的弹性碰撞截面无法使用。对于较重的气体,可以分别分析两种离子成分,并估算不同气体的弹性碰撞截面和散射顺序。

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