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Single Particle LIBS

机译:单粒子LIBS

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摘要

Laser-induced breakdown spectroscopy (LIBS) is ideally suited to function as a realtime, in situ monitor characterized by speed and experimental simplicity, and is sensitive enough for measuring aerosol elemental composition as well as overall mass concentrations. Ensemble averaging has historically been used to overcome the extensive laser shot-to-shot spectral fluctuations, thereby improving sensitivity of the LIBS technique. Ensemble averaging, however, reaches a natural limit when low to very low aerosol concentrations comprise the analyte species of interest. For the unique problem of aerosol analysis, the point-sampling nature of the LIBS technique plays an important role in LIBS data processing, and conditional spectral analysis may be used as defined by the presence or absence of discrete particles in a corresponding plasma volume. Conditional data analysis algorithms applied to individual spectra can improve signal-to noise ratios as well as enable the study of single-shot LIBS spectra corresponding to individual aerosol particles. Single-shot LIBS analyses of aerosols raises new questions regarding shot-to-shot fluctuations and data precision, as well as issues involving the fundamental interaction between the laser-induced plasma and aerosol particles. These issues are explored in the context of quantitative LIBS-based analysis of single aerosol particles.
机译:激光诱导击穿光谱法(LIBS)非常适合用作实时,原位监测仪,其特点是速度快,实验简单,并且灵敏度足以测量气溶胶元素组成和总质量浓度。集成平均在历史上一直被用来克服广泛的激光发射到发射的光谱波动,从而提高LIBS技术的灵敏度。但是,当低浓度到非常低的气溶胶浓度包含目标分析物种类时,集合平均会达到自然极限。对于气溶胶分析的独特问题,LIBS技术的点采样性质在LIBS数据处理中起着重要作用,可以使用条件光谱分析,如在相应的血浆体积中是否存在离散颗粒所定义的。应用于单个光谱的条件数据分析算法可以提高信噪比,并能够研究与单个气溶胶颗粒相对应的单次LIBS光谱。气溶胶的单次LIBS分析提出了关于逐次波动和数据精度的新问题,以及涉及激光诱导的等离子体与气溶胶颗粒之间的基本相互作用的问题。这些问题是在基于LIBS的定量分析中对单个气溶胶颗粒进行分析的。

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