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Detection of Explosives Using Differential Laser-Induced Perturbation Spectroscopy with a Raman-based Probe

机译:使用基于拉曼探针的差分激光诱导扰动光谱法检测炸药

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摘要

Explosives detection is carried out with a novel spectral analysis technique referred to as differential laser-induced perturbation spectroscopy (DLIPS) on thin films of TNT, RDX, HMX, and PETN. The utility of Raman spectroscopy for detection of explosives is enhanced by inducing deep ultraviolet laser perturbation on molecular structures in combination with a differential Raman sensing scheme. Principal components analysis (PCA) is used to quantify the DLIPS method as benchmarked against a traditional Raman scattering probe, and the related photo-induced effects on the molecular structure of the targeted explosives are discussed in detail. Finally, unique detection is observed with TNT samples deposited on commonly available background substrates of nylon and polyester. Overall, the data support DLIPS as a noninvasive method that is promising for screening explosives in real-world environments and backgrounds.
机译:爆炸物检测是通过一种新颖的光谱分析技术(称为差分激光诱导扰动光谱法(DLIPS))对TNT,RDX,HMX和PETN薄膜进行的。拉曼光谱仪用于检测爆炸物的方法是通过结合差分拉曼传感方案在分子结构上引起深紫外激光扰动来增强的。使用主成分分析(PCA)来量化DLIPS方法,以传统的拉曼散射探针为基准,并详细讨论了相关的光诱导作用对目标炸药分子结构的影响。最后,用沉积在通常可得的尼龙和聚酯本底上的TNT样品观察到独特的检测结果。总体而言,数据支持DLIPS作为一种非侵入性方法,有望在现实环境和背景下筛查爆炸物。

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