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Plasma-Particle Interactions in a Laser-Induced Plasma: Implications for Laser-Induced Breakdown Spectroscopy

机译:激光诱导等离子体中的等离子体-颗粒相互作用:激光诱导击穿光谱学的含义。

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摘要

The interaction between laser-induced plasmas and individual particles controls the rate of particle dissociation and subsequent atomic diffusion and emission processes, with implications for single-particle spectroscopy, as well as materials synthesis and other plasma sources. It is demonstrated through quantitative plasma imaging studies that discrete particles dissociate on a time scale of tens of microseconds within plasmas formed by 300-mJ Nd: YAG laser pulses. Significant spatial nonhomogeneity, as measured by localized atomic emission from particle-derived calcium atoms, persists on a comparable time scale, providing a measure of their average atomic diffusion rate of 0.04 m~(2)/s. In addition, the resulting calcium atomic emission is explored using image analysis as well as traditional spectroscopic analysis.
机译:激光诱导的等离子体与单个粒子之间的相互作用控制了粒子解离的速率以及随后的原子扩散和发射过程,这对单粒子光谱学以及材料合成和其他等离子体源产生了影响。通过定量等离子体成像研究表明,在300 mJ Nd:YAG激光脉冲形成的等离子体中,离散颗粒在数十微秒的时间尺度上解离。通过源自粒子的钙原子的局部原子发射来测量,存在显着的空间非均质性,并在相当的时间尺度上持续存在,提供了其平均原子扩散率0.04 m〜(2)/ s的量度。此外,使用图像分析以及传统的光谱分析方法来探索由此产生的钙原子发射。

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