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Atomic processes in emission characteristics of a lithium plasma plume formed by double-pulse laser ablation

机译:双脉冲激光烧蚀形成的锂等离子体羽的发射特性中的原子过程

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High resolution spectral analysis of lithium plasma formed by single and double laser ablation has been undertaken to understand the plume-laser interaction, especially at the early stages of the plasma plume. In order to identify different atomic processes in evolving plasma, time resolved spectral emission studies at different inter-pulse delays have been performed for ionic and neutral lithium lines emitting from different levels. Along with the enhancement in emission intensity, a large line broadening and spectral shift, especially in the case of excited state transition Li I 610.3 nm have been observed in the presence of the second pulse. This broadening and shift gradually decrease with increasing time delay. Another interesting feature is the appearance of a multi-component structure in the ionic line at 548.4 nm and these components change conversely into a single structure at the later stages of the plasma. The multi-component structures are correlated with the presence of different velocity (temperature) distributions in non-LTE conditions. Atomic analyses by computing photon emissivity coefficients with an ADAS code have been used to identify the above processes.
机译:已经进行了由单激光和双激光烧蚀形成的锂等离子体的高分辨率光谱分析,以了解羽-激光相互作用,尤其是在等离子体羽的早期。为了识别正在发展的等离子体中的不同原子过程,已经对从不同水平发射的离子和中性锂线进行了不同脉冲间延迟的时间分辨光谱发射研究。随着发射强度的增强,在第二个脉冲的存在下,特别是在激发态跃迁Li I 610.3 nm的情况下,观察到了较大的谱线展宽和光谱偏移。随着时间延迟的增加,这种扩展和偏移逐渐减小。另一个有趣的特征是在离子线中548.4 nm处出现了多组分结构,这些组分在等离子体的后期阶段反过来变成了单一结构。在非LTE条件下,多组件结构与不同速度(温度)分布的存在相关。通过使用ADAS码计算光子发射率系数进行的原子分析已用于识别上述过程。

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