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Study of laser-induced breakdown emission from liquid under double-pulse excitation

机译:双脉冲激发下激光诱导的液体击穿发射研究

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摘要

The application of laser-induced breakdown spectroscopy to liquid samples, by use of a Nd:YAG laser in double-pulse excitation mode, is described. It is found that the line emission from a magnesium ion or atom is more than six times greater for double-pulse excitation than for single-pulse excitation. The effect of interpulse separation on the emission intensity of a magnesium ion and a neutral atom showed an optimum enhancement at a delay of 2.5-3 μs. The intensity of neutral atomic line emission dominates the ion emission from the plasma for higher interpulse (>10 μs) separation. A study of the temporal evolution of the line emission from the plasma shows that the background as well as line emission decays faster in double-pulse excitation than in single-pulse excitation. The enhancement in the emission seems to be dominated by an increase in the volume of the emitting gas. The limit of detection for a magnesium solution improved from 230 parts per billion (ppb) in single-pulse mode to 69 ppb in double-pulse mode.
机译:描述了通过在双脉冲激发模式下使用Nd:YAG激光将激光诱导击穿光谱法应用于液体样品。已经发现,与单脉冲激发相比,双脉冲激发的镁离子或原子的线发射大六倍以上。脉冲间分离对镁离子和中性原子发射强度的影响表现出最佳的增强,延迟为2.5-3μs。中性原子线发射的强度主导了来自等离子体的离子发射,以实现更高的脉冲间(> 10μs)分离。对来自等离子体的线发射的时间演化的研究表明,双脉冲激发的背景和线发射的衰减比单脉冲激发的快。排放的增加似乎主要由排放气体的体积增加决定。镁溶液的检出限从单脉冲模式的230 ppb(十亿分之一)提高到双脉冲模式的69 ppb。

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    《Applied optics》 |2003年第12期|共8页
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  • 正文语种 eng
  • 中图分类 光学;
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