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Characteristics of laser induced breakdown investigated by a compact nongated optical multichannel analyzer system and its potential application

机译:CompactNongated Multhancannel分析仪系统研究激光诱导击穿的特点及其潜在应用

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摘要

Laser induced breakdown is a highly temporally and spatially dynamic phenomenon, normally studied using a highly temporally resolved optical detector system. In this work, a compact, low cost optical multichannel analyzer (OMA) system without a built-in temporal gating device and thus operated under a free running mode was used to investigate the characteristics of laser induced plasma. A Nd-YAG laser beam was used as the excitation source from several samples, namely, copper, zinc, and aluminum plates. The characteristics of the plasma emission produced under various experimental parameters, including the pulse energy, surrounding gas pressure, and collection fiber position, were examined. It was found that the essential features of emission spectra can be investigated even using the ungated, compact OMA system even without a highly temporally resolved gating system. The plasma emission characteristics critically depend on the experimental parameters. A quality emission spectrum, featuring a high intensity with a low background, can be obtained using the ungated, compact OMA system under optimized conditions, namely, a pulse energy of approximately 8 mJ, a surrounding gas pressure of 10 Torr, and a collection fiber position of more than 5 mm above the surface of the sample. The features of the emission spectra detected under optimized conditions are only similar to those obtained using a sophisticated, gated OMA system. The characteristics of the emission spectra are in good agreement with the previous assumption of the shockwave role in plasma excitation. Having quality emission spectra under the optimized conditions, a preliminary practical laser induced breakdown spectroscopy (LIBS) analysis using the ungated, compact OMA system was performed on several samples, such as standard brass, commercial pure gold, and natural stone samples. The aluminum emission lines are strongly detected from the standard brass sample (C1118) containing aluminum at 2.8%. The LIBS system also unequivocally revealed a qualitatively abandoned impurity presence in the purportedly pure commercial gold sample. It also effectively confirmed qualitatively a Cu presence in the blinking spots of the natural stone collected from a traditional mining site in Aceh. This result implies the effectiveness of the LIBS using the ungated, compact OMA system for quick, practical analysis.
机译:激光诱导的击穿是一种高度时间和空间的动态现象,通常使用高度时间分辨的光学检测器系统研究。在这项工作中,使用具有内置时间门控设备的紧凑,低成本的光学多通道分析仪(OMA)系统,并在自由运行模式下操作用于研究激光诱导等离子体的特性。 ND-YAG激光束用作来自多个样品的激发源,即铜,锌和铝板。检查各种实验参数的等离子体发射的特性,包括脉冲能量,周围气压和收集纤维位置。结果发现,即使没有高度临时分辨的门控系统,也可以研究发射光谱的基本特征。等离子体排放特性尺寸依赖于实验参数。在优化条件下,可以获得具有低背景的高强度的优质发射光谱,即在优化条件下,即大约8 MJ的脉冲能,10托的周围气体压力和收集纤维的脉冲能量在样品表面上方超过5mm的位置。在优化条件下检测到的发射光谱的特征仅与使用复杂的门控OMA系统获得的特征类似。发射光谱的特征与先前的缓冲波在等离子体激发中的假设吻合吻合良好。具有优化条件下的质量发射光谱,在几个样本上进行初步实际激光诱导的击穿光谱(LIBS)分析,例如标准黄铜,商业纯金和天然石材样品。从含有2.8%的含铝的标准黄铜样品(C1118)强烈地检测铝发射线。 LIBS系统也明确地揭示了据称纯商业金色样品中的定性废弃的杂质存在。它还有效地证实了在从亚齐的传统采矿部位收集的天然石材的闪烁斑点中的CU存在。该结果暗示了LIBS使用未通用的紧凑型OMA系统进行快速实际分析的有效性。

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