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Detection of trace explosives on relevant substrates using a mobile platform for photothermal infrared imaging spectroscopy (PT-IRIS)

机译:使用移动平台进行光热红外成像光谱(PT-IRIS)检测相关基材上的痕量炸药

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This manuscript describes the results of recent tests regarding standoff detection of trace explosives on relevant substrates using a mobile platform. We are developing a technology for detection based on photo-thermal infrared (IR) imaging spectroscopy (PT-IRIS). This approach leverages one or more microfabricated IR quantum cascade lasers, tuned to strong absorption bands in the analytes and directed to illuminate an area on a surface of interest. An IR focal plane array is used to image the surface thermal emission upon laser illumination. The PT-IRIS signal is processed as a hyperspectral image cube comprised of spatial, spectral and temporal dimensions as vectors within a detection algorithm. Increased sensitivity to explosives and selectivity between different analyte types is achieved by narrow bandpass IR filters in the collection path. We have previously demonstrated the technique at several meters of stand-off distance indoors and in field tests, while operating the lasers below the infrared eye-safe intensity limit (100 mW/cm~2). Sensitivity to explosive traces as small as a single 10 μm diameter particle (~1 ng) has been demonstrated. Analytes tested here include RDX, TNT, ammonium nitrate and sucrose. The substrates tested in this current work include metal, plastics, glass and painted car panels.
机译:此稿件描述了最近使用移动平台对相关基板上跟踪爆炸物的轨迹检测的近距离检测的结果。我们正在开发一种基于光 - 热红外(IR)成像光谱(PT-IRIS)的检测技术。该方法利用一个或多个微制造的IR量子级联激光器,调谐到分析物中的强吸收带,并指向在感兴趣的表面上照射区域。 IR焦平面阵列用于在激光照射时对表面热发射进行图像。 PT-IRIS信号被处理为包括作为检测算法内的向量的空间,光谱和时间尺寸的高光谱图像立方体。通过收集路径中的窄带通红外滤波器实现对不同分析物类型之间的爆炸物和选择性的敏感性增加。我们之前已经在室内脱落距离和现场测试中展示了该技术,同时在红外眼睛安全强度限制下方的激光器(100 mW / cm〜2)。已经证明了对爆炸迹线的敏感性,作为单个10μm直径粒子(〜1ng)。这里测试的分析物包括RDX,TNT,硝酸铵和蔗糖。在本电流工作中测试的基材包括金属,塑料,玻璃和涂装车面板。

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