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Characterization of laser-induced plasmas for fiber optic probes

机译:光纤探头的激光诱导等离子体的表征

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Abstract: We recently developed a number of fiber-optic probe designs for remote elemental analyses using laser-induced breakdown spectroscopy (LIBS). The LIBS process is complicated by non- linear ablation and excitation of the sample which hinders the reproducibility of the technique. We are conducting dual-pulse LIBS laser studies to separately investigate the ablation and excitation steps. Signal enhancements as high as five-fold are observed using dual-laser pulses over conventional LIBS. The enhancement is very dependent on the timing between the two laser pulses. It also appears that the sample matrix influences the degree of enhancement observed. Factors affecting the LIBS signal are also being investigated using a time-resolved imaging setup which consists of an acousto-optic tunable filter (AOTF) along with a gated intensified charge- coupled device (ICCD) detector. Using simple imaging techniques, we have found for certain samples that the emission intensity increases and the overall shape of the plasma changes with increasing number of laser shots. The size and shape of the plume appears to be related to the geometry and depth of the crater that is formed in the sample. It is hoped that the results of these studies will be useful in making better fiber-optic LIBS measurements. !24
机译:摘要:我们最近开发了许多用于使用激光诱导击穿光谱(LIBS)进行远程元素分析的光纤探头设计。 LIBS工艺由于非线性烧蚀和样品激发而变得复杂,这阻碍了该技术的可重复性。我们正在进行双脉冲LIBS激光研究,以分别研究消融和激发步骤。使用双激光脉冲,与传统的LIBS相比,信号增强高达五倍。增强非常依赖于两个激光脉冲之间的时序。还似乎样品基质会影响观察到的增强程度。还使用时间分辨成像装置来研究影响LIBS信号的因素,该装置由声光可调滤波器(AOTF)和门控增强型电荷耦合器件(ICCD)检测器组成。使用简单的成像技术,我们发现某些样品的发射强度增加,并且等离子体的整体形状随着激光发射次数的增加而变化。羽流的大小和形状似乎与样品中形成的弹坑的几何形状和深度有关。希望这些研究的结果对进行更好的光纤LIBS测量有用。 !24

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