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Stand-off detection of trace explosives by infrared photo-thermal spectroscopy

机译:红外光热光谱法远距离检测痕量炸药

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We have developed a technique for stand-off detection of trace explosives using infrared photo-thermal imaging. Compact infrared quantum cascade lasers tuned to strong absorption bands in the explosive traces illuminate a surface of interest while an infrared camera detects the small increase in thermal signal. We have demonstrated the technique at several meters of stand-off distance under laboratory conditions using TNT and RDX traces, while operating the lasers below the eye-safe limit (100 mW/cm2). Sensitivity to explosive traces as small as 1 ng has been demonstrated, using a micro-bolometer array. We show the viability of this approach on a variety of surfaces which transmit, reflect or absorb the infrared laser light. By varying the incident wavelength slightly, we show selectivity between TNT and RDX. Using several laser wavelengths, we increase both sensitivity and selectivity while reducing the false alarm rate. We have developed a prototype system for outdoor testing at longer stand-offs.
机译:我们已经开发出一种利用红外光热成像对痕量炸药进行防区外探测的技术。紧凑的红外量子级联激光器调谐至爆炸痕迹中的强吸收带,可照亮目标表面,而红外摄像机则可检测到热信号的微小增加。我们已经在实验室条件下使用TNT和RDX迹线证明了该技术在几米远的距离上的工作能力,同时在低于人眼安全极限(100 mW / cm 2 )的条件下操作激光。使用微辐射热计阵列已证明对小至1 ng爆炸痕迹的敏感性。我们在透射,反射或吸收红外激光的各种表面上显示了这种方法的可行性。通过稍微改变入射波长,我们显示出TNT和RDX之间的选择性。使用几种激光波长,我们既提高了灵敏度和选择性,又降低了误报率。我们已经开发出了原型系统,可以在更长的距离内进行户外测试。

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