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Mobile cart-based detection of infrared backscatter from hazardous substances at proximal distances

机译:基于移动推车的近距离危险物质的红外反向散射检测

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We present a cart-based system based on infrared backscatter imaging spectroscopy (IBIS) for detecting and analyzing trace amounts of hazardous materials as particles on solid substrates. A system comprising four quantum cascade lasers rapidly scans through the mid-LWIR (6 μm - 11 μm) wavelength range to illuminate samples containing target analytes. The infrared backscatter signal is collected as a series of images to form a hyperspectral image cube. Each image is collected at a specified excitation wavelength using a liquid nitrogen cooled MCT focal plane array. The experimental results of this cart-based infrared illumination and backscatter detection are presented. Results compare imaged spectra over a range of different wavelength tuning speeds and different combinations of substrates and analytes. Camera frames are collected while the laser is sweeping through its wavelength range. A single complete analysis can be completed in less than 1 second. In every camera frame, each pixel of the 128×128 pixel camera array produces an individual intensity. These frames are then binned and assigned a discrete wavelength in steps, typically 0.01 μm, to produce a spectrum over 6-11 μm for each camera pixel. Target samples are prepared by sieving particles or by a dry transfer technique, to mimic particle size distributions associated with real world threats at trace levels, for explosives and illicit drugs on relevant substrates.
机译:我们提出了一种基于红外反向散射成像光谱(IBIS)的基于推车的系统,用于检测和分析痕量的危险材料作为固体基材上的颗粒。包括四个量子级联激光器的系统通过中间LWIR(6μm-11μm)波长范围迅速扫描,以照射含有靶分析物的样品。将红外反向散射信号作为一系列图像收集,以形成超光图像立方体。使用液氮冷却的MCT焦平面阵列在指定的激发波长处收集每个图像。提出了这种基于推车的红外照明和反向散射检测的实验结果。结果将成像光谱比较在一系列不同波长调谐速度和基材和分析物的不同组合中。在激光通过其波长范围扫描时收集相机框架。单个完全分析可以在不到1秒钟内完成。在每个相机框架中,128×128像素相机阵列的每个像素产生各个强度。然后将这些帧纳入并分配步骤,通常为0.01μm的离散波长,以产生每种相机像素的6-11μm的光谱。靶样品通过筛分颗粒或通过干转移技术制备,以模拟与痕量水平的真实世界威胁相关的模拟粒度分布,用于相关基材上的爆炸物和非法药物。

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