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Laser-Induced Breakdown Spectroscopy for the remote detection of explosives at level of fingerprints

机译:激光诱导的击穿光谱,用于远程检测指纹水平的炸药

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We report the results of the application of Laser-Induced Breakdown Spectroscopy (LIBS) for the detection of some common military explosives and theirs precursors deposited on white varnished car's external and black car's internal or external plastic. The residues were deposited by an artificial silicon finger, to simulate material manipulation by terrorists when preparing a car bomb, leaving traces of explosives on the parts of a car. LIBS spectra were acquired by using a first prototype laboratory stand-off device, developed in the framework of the EU FP7 313077 project EDEN (End-user driven DEmo for CBRNe). The system operates at working distances 8-30 m and collects the LIBS in the spectral range 240-840 nm. In this configuration, the target was moved precisely in X-Y direction to simulate the scanning system, to be implemented successively. The system is equipped with two colour cameras, one for wide scene view and another for imaging with a very high magnification, capable to discern fingerprints on a target. The spectral features of each examined substance were identified and compared to those belonging to the substrate and the surrounding air, and those belonging to possible common interferents. These spectral differences are discussed and interpreted. The obtained results show that the detection and discrimination of nitro-based compounds like RDX, PETN, ammonium nitrate (AN), and urea nitrate (UN) from organic interfering substances like diesel, greasy lubricants, greasy adhesives or oils in fingerprint concentration, at stand-off distance of some meters or tenths of meters is feasible.
机译:我们报告了激光诱导的击穿光谱(LIBS)的应用结果检测一些常见的军用爆炸物及其沉积在白色涂土式汽车外部和黑色汽车内部或外部塑料的前体。残留物被人造硅手指沉积,以在准备汽车炸弹时模拟恐怖分子的材料操纵,在汽车的部件上留下炸药的痕迹。通过使用第一个原型实验室脱扣装置获取LIB SPECTRA,在欧盟FP7 313077项目EDEN(END-USER驱动的CBRNE)的框架内开发。该系统在工作距离8-30距离工作,并在光谱范围内收集240-840nm的Libs。在这种配置中,目标在X-Y方向上精确地移动以模拟扫描系统,连续实现。该系统配备了两种彩色摄像头,一个用于宽场景,另一个用于成像,具有非常高的放大率,能够在目标上辨别指纹。鉴定了每个检查物质的光谱特征,并与属于基材和周围空气的那些,以及属于可能的常见干扰的那些。讨论和解释这些光谱差异。得到的结果表明,从有机干涉物质如柴油,油腻的润滑剂,油腻的粘合剂或指纹浓度下的油脂,在指纹浓度下的有机干扰物质(如指纹浓度)中的硝基,肥料,硝酸铵(硝酸铵(An)和尿素硝酸盐(UN)的检测和区分距离距离距离或十米的距离是可行的。

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