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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Signal enhancement in laser-induced breakdown spectroscopy using fast square-pulse discharges
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Signal enhancement in laser-induced breakdown spectroscopy using fast square-pulse discharges

机译:快速方脉冲放电在激光诱导击穿光谱中的信号增强

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A fast, high voltage square-shaped electrical pulse initiated by laser ablation was investigated as a means to enhance the analytical capabilities of laser Induced breakdown spectroscopy (LIBS). The electrical pulse is generated by the discharge of a charged coaxial cable into a matching impedance. The pulse duration and the stored charge are determined by the length of the cable. The ablation plasma was produced by hitting an aluminum target with a nanosecond 532-nm Nd:YAG laser beam under variable fluence 1.8-900 J cm(-2). An enhancement of up to one order of magnitude on the emission signal-to-noise ratio can be achieved with the spark discharge assisted laser ablation. Besides, this increment is larger for ionized species than for neutrals. LIBS signal is also increased with the discharge voltage with a tendency to saturate for high laser fluences. Electron density and temperature evolutions were determined from time delays of 100 ns after laser ablation plasma onset. Results suggest that the spark discharge mainly re-excites the laser produced plume. (C) 2016 Elsevier B.V. All rights reserved.
机译:作为提高激光诱导击穿光谱法(LIBS)的分析能力的一种手段,研究了一种由激光烧蚀引发的快速高压方形电脉冲。电脉冲是通过将已充电的同轴电缆放电到匹配阻抗中而产生的。脉冲持续时间和所存储的电荷取决于电缆的长度。消融等离子体是通过在可变通量1.8-900 J cm(-2)下用纳秒532 nm Nd:YAG激光束击中铝靶而产生的。利用火花放电辅助的激光烧蚀可以实现发射信噪比的高达一个数量级的增强。此外,对于离子化物种而言,此增量要比对于中性离子而言更大。 LIBS信号也随放电电压而增加,对于高激光通量有趋于饱和的趋势。从激光烧蚀等离子体开始后的100 ns的时间延迟确定电子密度和温度演变。结果表明,火花放电主要重新激发了激光产生的羽流。 (C)2016 Elsevier B.V.保留所有权利。

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