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High-speed and large-area scanning of surfaces for trace chemicals using wavelength-tunable quantum cascade lasers

机译:使用波长可调量子级联激光器对表面进行高速大面积扫描以查找痕量化学物质

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A standoff chemical detection system is being developed to detect and identify a wide range of trace chemicals on a variety of natural and artificial surfaces. The system is based on active mid-infrared (MIR) hyperspectral imaging in which the target surface is illuminated using miniature, rapidly tunable, external-cavity quantum cascade lasers (EC-QCLs). These lasers are tuned across the wavelength range of 7.7 - 11.8 μm while a HgCdTe camera captures images of the reflected light. Hypercubes with 128x128 pixels and more than 130 wavelengths are captured within 0.1 s. By operating the camera in sub-window mode, hypercubes with 16x96 pixels and 138 frames are captured in only 14 ms. To the best of our knowledge, these represent the world's fastest acquisition of active MIR hypercubes. Raster-scanning of the laser beam is used to scan large regions. In this talk, we will present results for detecting traces of solid chemicals (with loadings on the order of 100 μg) on natural outdoor surfaces such as roofing shingles, concrete, sand, and asphalt at a standoff distance of 5 m. The measured spectra are found to correlate very well with those of reference measurements made of pure chemicals after accounting for the substrate reflectance.
机译:正在开发一种隔离化学物检测系统,以检测和识别各种天然和人造表面上的多种痕量化学物。该系统基于主动中红外(MIR)高光谱成像,其中使用微型,快速可调的外腔量子级联激光器(EC-QCL)照射目标表面。这些激光器在7.7-11.8μm的波长范围内进行调谐,而HgCdTe摄像机则捕获反射光的图像。具有128x128像素和130多个波长的超立方体可在0.1 s内捕获。通过在子窗口模式下操作相机,仅14毫秒即可捕获到16x96像素和138帧的超立方体。据我们所知,它们代表了世界上最快的有源MIR超立方体采集。激光束的光栅扫描用于扫描大区域。在本次演讲中,我们将介绍在5 m的固定距离处检测天然室外表面(如屋顶板,混凝土,沙子和沥青)上痕量固体化学物质(负载量为100μg)的结果。在考虑了基材反射率之后,发现测得的光谱与纯化学物质的参考测量的光谱非常相关。

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