首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Time resolved study of the emission enhancement mechanisms in orthogonal double-pulse laser-induced breakdown spectroscopy
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Time resolved study of the emission enhancement mechanisms in orthogonal double-pulse laser-induced breakdown spectroscopy

机译:正交双脉冲激光击穿光谱中发射增强机理的时间分辨研究

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The evolution of laser induced ablation plume on aluminum targets has been investigated in orthogonal pre-ablation double pulse scheme at atmospheric pressure from the earliest stages of plasma evolution. Time-resolved emission spectra from neutrals, singly- and doubly-ionized species obtained with the double pulse experiment have been compared with those from the single pulse configuration. Signal-to-noise enhancement reaches values of up to 15 depending on the analyzed species; and the lower the charge state the later its maximum signal-to-noise ratio is reached. Ablation plume dynamics was monitored from 10 ns after the plasma onset via shadowgraphy and fast-photography with narrow interference filters to follow the evolution of individual species. Results show that ionic species from the target are located at the plasma core while nitrogen from the background air is found at the plume peripheral. Initially both configurations exhibit similar ablation plume sizes and their expansions were successfully fitted with the strong explosion model for the first 500 ns. At later times a good agreement was obtained by using the drag model, which predicts that the plume expansion eventually stops due to interaction with the background gas particles. The emission enhancement measured in the double pulse scheme is discussed in terms of the models describing the plume dynamics.
机译:从等离子体演化的最早阶段开始,就在大气压力下以正交预烧蚀双脉冲方案研究了铝靶材上激光诱导的烧蚀羽流的演化。通过双脉冲实验获得的中性,单电离和双电离物质的时间分辨发射光谱已与单脉冲配置的光谱进行了比较。信噪比增强值最高可达15,具体取决于所分析的物种。电荷状态越低,其最大信噪比就越晚。在等离子体出现后的10 ns内,通过阴影照相法和带有窄干涉滤光片的快速摄影来监测消融羽流动力学,以跟踪各个物种的演变。结果显示,来自靶标的离子种类位于等离子体核心,而来自背景空气的氮位于羽状外围。最初,这两种配置都显示出相似的消融羽流大小,并且在最初的500 ns中,其扩展成功地与强爆炸模型拟合。后来,通过使用阻力模型获得了很好的一致性,该模型预测由于与背景气体颗粒之间的相互作用,羽流膨胀最终会停止。根据描述羽流动力学的模型讨论了在双脉冲方案中测量的发射增强。

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