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Integrated Laser Sensor (ILS) for Remote Surface Analysis: Application for Detecting Explosives in Fingerprints

机译:用于远程表面分析的集成激光传感器(ILS):在指纹中检测爆炸物的应用

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摘要

Here, we describe an innovative Integrated Laser Sensor (ILS) that combines four spectroscopic techniques and two vision systems into a unique, transportable device. The instrument performs Raman and Laser-Induced Fluorescence (LIF) spectroscopy excited at 355 nm and Laser-Induced Breakdown Spectroscopy (LIBS) excited at 1064 nm, and it also detects Laser Scattering (LS) from the target under illumination at 650 nm. The combination of these techniques supplies information about: material change from one scanning point to another, the presence of surface contaminants, the molecular and elemental composition of top target layers. Switching between the spectroscopic techniques and the laser wavelengths is fully automatic. The instrument is equipped with an autofocus and it performs scanning with a chosen grid density over an interactively-selected target area. Alternative to the spectroscopic measurements, it is possible to switch the instrument to a high magnification target viewing. The working distances tested until now are between 8.5 and 30 m. The instrument is self-powered and remotely controlled via wireless communication. The ILS has been fully developed at ENEA for security applications and it was successfully tested in two outdoor campaigns where an automatic recognition of areas containing explosives in traces had been implemented. The strategies for the identification of nitro-compounds placed on various substrates as fingerprints and the results obtained at a working distance of 10 m are discussed in the following.
机译:在这里,我们描述了一种创新的集成激光传感器(ILS),它将四种光谱技术和两个视觉系统结合到一个独特的可移动设备中。该仪器执行在355 nm激发的拉曼光谱和激光诱导荧光(LIF)光谱以及在1064 nm激发的激光诱导击穿光谱(LIBS),并且还可以在650 nm的照明下检测目标的激光散射(LS)。这些技术的组合可提供以下信息:材料从一个扫描点变为另一个扫描点,表面污染物的存在,目标顶层的分子和元素组成。光谱技术和激光波长之间的切换是全自动的。该仪器配备了自动聚焦功能,并且可以在交互式选择的目标区域上以选定的网格密度执行扫描。替代光谱测量,可以将仪器切换到高倍率目标观察。迄今为止测试的工作距离在8.5到30 m之间。该仪器是自供电的,可以通过无线通信进行远程控制。 ILS已在ENEA上针对安全应用进行了全面开发,并已在两次户外活动中成功进行了测试,这些活动已自动识别出痕量爆炸物区域。下文讨论了识别各种基材上的硝基化合物作为指纹的识别策略以及在10 m的工作距离处获得的结果。

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