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Atmosphere Issues in Detection of Explosives and Organic Residues

机译:爆炸物和有机残留物检测中的大气问题

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This study makes a comparison of LIBS emission from molecular species in plasmas produced from organic residues on a non-metallic substrate by both a 5 ns Nd:YAG laser (1064 nm) and a 40 fs Ti:Sapphire laser (800 nm) in air and argon atmospheres. The organic samples analyzed had varying amounts of carbon, nitrogen, hydrogen, and oxygen in their molecular structure. The characterization was based on the atomic carbon, hydrogen, nitrogen, and oxygen lines as well as the diatomic species CN (B~2Σ~+ - X~2Σ~+) and the C_2 (d~3Π_g - a~3Π_u). Principal Component Analysis (PCA) was used to identify similarities of the organic analyte via the emission spectra. The corresponding Receiver Operating Characteristics (ROC) curves show the limitations of the PCA model for the nanosecond regime in air.
机译:这项研究比较了空气中的5 ns Nd:YAG激光器(1064 nm)和40 fs Ti:蓝宝石激光器(800 nm)在空气中从非金属基底上的有机残留物产生的等离子体中分子种类的LIBS发射和氩气气氛。分析的有机样品在分子结构中具有变化的碳,氮,氢和氧含量。该表征基于原子碳,氢,氮和氧线以及双原子物种CN(B〜2Σ〜+-X〜2Σ〜+)和C_2(d〜3Π_g-a〜3Π_u)。主成分分析(PCA)用于通过发射光谱识别有机分析物的相似性。相应的接收器工作特性(ROC)曲线显示了PCA模型在空气中纳秒范围内的局限性。

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