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Deep Raman spectroscopy for the non-invasive standoff detection of concealed chemical threat agents

机译:深度拉曼光谱技术用于非侵入式对隐化学威胁剂的对峙检测

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摘要

Deep Raman spectroscopy has been utilized for the standoff detection of concealed chemical threat agents from a distance of 15 meters under real life background illumination conditions. By using combined time and space resolved measurements, various explosive precursors hidden in opaque plastic containers were identified non-invasively. Our results confirm that combined time and space resolved Raman spectroscopy leads to higher selectivity towards the sub-layer over the surface layer as well as enhanced rejection of fluorescence from the container surface when compared to standoff spatially offset Raman spectroscopy. Raman spectra that have minimal interference from the packaging material and good signal-to-noise ratio were acquired within 5 seconds of measurement time. A new combined time and space resolved Raman spectrometer has been designed with nanosecond laser excitation and gated detection, making it of lower cost and complexity than picosecond-based laboratory systems.
机译:深度拉曼光谱已用于在现实背景照明条件下从15米远处对隐蔽的化学威胁剂进行隔离检测。通过结合时间和空间分辨的测量,可以无创地识别隐藏在不透明塑料容器中的各种爆炸物前体。我们的结果证实,与间隔空间偏移拉曼光谱法相比,时间和空间分辨拉曼光谱法的结合导致对表面层上子层的更高选择性以及增强的来自容器表面的荧光排斥。在5秒的测量时间内即可获得对包装材料的干扰最小且信噪比良好的拉曼光谱。设计了一种新的时空组合拉曼光谱仪,具有纳秒激光激发和门控检测功能,与基于皮秒的实验室系统相比,其成本和复杂性更低。

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