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首页> 外文期刊>Applied Spectroscopy >A Study of Ablation, Spatial, and Temporal Characteristics of Laser-Induced Plasmas Generated by Multiple Collinear Pulses
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A Study of Ablation, Spatial, and Temporal Characteristics of Laser-Induced Plasmas Generated by Multiple Collinear Pulses

机译:多个共线脉冲产生的激光诱导等离子体的烧蚀,时空特性研究

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摘要

Multi-pulse laser-induced breakdown spectroscopy (LIBS) in the collinear pulse configuration with time-integrating detection was performed on metallic samples in ambient air in an effort to clarify the contributing processes responsible for the signal enhancement observed in comparison with single-pulse excitation. Complementary experiments were also carried out on another LIBS setup using detection by an imaging spectrograph with high time resolution. The effects of laser bursts consisting of up to seven ns-range pulses from Nd-doped solid-state lasers operating at their fundamental wavelength and separated by 8.5–50 μs time gaps was studied. The ablation and emission characteristics of the generated plasmas were investigated using light profilometry, microscopy, plasma imaging, emission distribution mapping, time-resolved line emission monitoring, and plasma temperature calculations. The experimental data suggest that the two contributing processes mainly responsible for the signal enhancement effect are the plume reheating caused by the sequential laser pulses and, more dominantly, the increased material ablation attributed to the lower breakdown threshold for the preheated (molten) sample surface and/or the reduced background gas pressure behind the shockwave of preceding pulses.
机译:对环境空气中的金属样品进行了共线脉冲配置并具有时间积分检测的多脉冲激光诱导击穿光谱法(LIBS),以阐明与单脉冲激发相比引起信号增强的贡献过程。还使用具有高时间分辨率的成像光谱仪进行检测,在另一种LIBS装置上进行了补充实验。研究了由Nd掺杂的固态激光器产生的最多7 ns范围的脉冲激光脉冲的影响,这些脉冲在其基本波长下工作并相隔8.5–50μs的时间间隔。使用光轮廓仪,显微镜,等离子体成像,发射分布图,时间分辨线发射监测和等离子体温度计算,研究了产生的等离子体的烧蚀和发射特性。实验数据表明,造成信号增强效果的两个主要过程是连续激光脉冲引起的羽流再加热,更主要的是,由于预热(熔融)样品表面的击穿阈值较低,材料烧蚀增加了。 /或先前脉冲的冲击波背后的背景气压降低。

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    《Applied Spectroscopy》 |2010年第2期|161-172|共12页
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