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首页> 外文期刊>Applied optics >Formation and emission characteristics of CN molecules in laser induced low pressure He plasma and its applications to N analysis in coal and fossilization study
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Formation and emission characteristics of CN molecules in laser induced low pressure He plasma and its applications to N analysis in coal and fossilization study

机译:激光诱导的低压He等离子体中CN分子的形成与发射特性及其在煤和化石研究中的氮分析中的应用

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摘要

Presented in this paper are the results of an experimental study on the laser induced plasma emission of a number of CN free samples (urea, sucrose) with 40 mJ pulse energy using He and N-2 ambient gases. It is shown that the CN emission has its exclusive sources in the molecules produced as the result of chemical bonding either between the ablated C and N ions in the He plasma or between the ablated C and dissociated N from the N-2 ambient gas. The emission intensities in both cases are found to have the highest values at the low gas pressure of 2 kPa. The emission in He gas is shown to exhibit the typical characteristics related to a shockwave generated excitation mechanism. The experiments using He ambient gas further demonstrate the feasible laser-induced breakdown spectroscopy application to quantitative and sensitive N analysis of coal and promising application for practical in situ carbon dating of fossils. (C) 2016 Optical Society of America
机译:本文介绍的是使用He和N-2环境气体以40 mJ脉冲能量对大量无CN样品(尿素,蔗糖)进行激光诱导等离子体发射的实验研究结果。结果表明,由于He等离子体中烧蚀的C和N离子之间或烧蚀的C和从N-2环境气体中解离的N之间的化学键合,CN发射在产生的分子中具有排他的来源。两种情况下的发射强度都在2 kPa的低气压下具有最高值。氦气中的发射显示出与冲击波产生的激发机制有关的典型特征。使用氦环境气体进行的实验进一步证明了可行的激光诱导击穿光谱技术在煤的定量和灵敏氮分析中的应用,并有望在化石的实际原位碳定年中应用。 (C)2016美国眼镜学会

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