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Advances in stand-off detection of trace explosives by infrared photo-thermal imaging

机译:红外光热成像技术在痕量炸药的对峙检测中的研究进展

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A technique for stand-off detection of trace explosives using infrared (IR) photo-thermal (PT) imaging, remote explosives detection (RED), is under development at the Naval Research Laboratory. In this approach, compact IR quantum cascade lasers (QCLs) tuned to strong absorption bands of trace explosives illuminate a surface of interest. An IR focal plane array is used to image the surface and detect any small increase in the thermal emission upon laser illumination. The technique has been previously demonstrated at several meters of stand-off distance indoors and in field tests with sensitivity to explosive traces as small as a single grain (~1 ng), while operating the lasers below the eye-safe intensity limit (100 mW/cm~2) at the tested wavelengths. By varying the incident wavelength slightly, selectivity between TNT and RDX has been achieved. A complete test and analysis can be performed in less than 1 second. This manuscript critically examines components used with RED and demonstrates several improvements. These include QCL drive electronics for narrower spectral emission linewidth, fixed wavelength QCL packaging that optimizes spectral and spatial output, fiber-optic coupling for QCL beam steering and spatial filtering, cooled IR sensors that increase sensitivity and speed, tunable QCL sources that increase selectivity and extend the library of possible analytes, and dynamic PT signal processing that can increase sensitivity and speed. When considered in combination with the capabilities previously demonstrated for RED, and its capability to operate within eye-safety limits, this technology offers the potential for a wide area of applications relating to the detection of trace explosives on surfaces in both non-contact and stand-off configurations.
机译:海军研究实验室正在开发一种使用红外(IR)光热(PT)成像进行远距离爆炸物检测的技术,即远程爆炸物检测(RED)。通过这种方法,将紧凑型IR量子级联激光器(QCL)调谐到痕量炸药的强吸收带,即可照亮目标表面。红外焦平面阵列用于对表面成像,并检测激光照射后热量散发的任何微小增加。该技术先前已在室内几米远的距离处进行了证明,并在现场测试中对爆炸痕迹敏感,其爆炸痕迹小至单个颗粒(〜1 ng),而激光在低于人眼安全的强度极限(100 mW)下运行/ cm〜2)。通过稍微改变入射波长,可以实现TNT和RDX之间的选择性。完整的测试和分析可以在不到1秒的时间内完成。该手稿严格审查了RED使用的组件,并展示了一些改进。这些产品包括用于缩小光谱发射线宽的QCL驱动电子设备,用于优化光谱和空间输出的固定波长QCL封装,用于QCL光束控制和空间滤波的光纤耦合,用于提高灵敏度和速度的冷却IR传感器,用于提高选择性和选择性的可调QCL源。扩展了可能的分析物库,并进行了动态PT信号处理,可以提高灵敏度和速度。当考虑与先前针对RED演示的功能以及在人眼安全范围内操作的能力相结合时,该技术为涉及非接触和支架表面上的痕量爆炸物检测的广泛应用提供了潜力-off配置。

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