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Remote bio-aerosol detection using a broadband 1.5 micron laser

机译:使用宽带1.5微米激光进行远程生物气溶胶检测

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Bioaerosol weapons pose a threat to both troops and civilians. Remote detection of bioaerosols is important for timely deployment of effective countermeasures against these weapons and for triggering other detection systems. In this paper we describe a new approach for remote bioaerosol detection based on an eye-safe spectrally broadband backscatter LIDAR. This technique illuminates a remote cloud using a spectrally broadband laser centred about 1.5 μm. The spectrally backscattered fraction of the broadband illumination beam is detected. Using an inverse Monte Carlo algorithm, the particle size distribution and refractive index of the cloud particles can be determined. In this way threat clouds containing anomalous man-made distributions of particles could be discriminated from normal background clouds. The laser is a custom designed source based on a special non-collinear optical parametric oscillator configuration. The laser produces Q-switched pulses with a maximum spectral bandwidth covering the 1.4 to 1.8 μm region. In practice the spectral region of 1.52 to 1.75 μm is used as this matches an atmospheric transmission window. A comparison of this broadband backscatter LIDAR technique, with the commonly used UV lidar fluorescence technique will be presented. Progress to date and details of a prototype LIDAR system will be described.
机译:生物气溶胶武器对部队和平民均构成威胁。生物气溶胶的远程检测对于及时部署针对这些武器的有效对策并触发其他检测系统非常重要。在本文中,我们描述了一种基于人眼安全的频谱宽带反向散射LIDAR的远程生物气溶胶检测新方法。该技术使用中心约1.5μm的光谱宽带激光照亮了偏远的云。检测宽带照明光束的光谱反向散射部分。使用逆蒙特卡洛算法,可以确定云粒的粒径分布和折射率。这样,可以将包含异常的人为分布粒子的威胁云与正常背景云区分开。激光是基于特殊的非共线光学参量振荡器配置的定制设计光源。激光产生Q开关脉冲,其最大光谱带宽覆盖1.4至1.8μm区域。实际上,使用1.52至1.75μm的光谱区域,因为它与大气透射窗口匹配。将介绍这种宽带反向散射激光雷达技术与常用的紫外线激光雷达荧光技术的比较。将描述迄今为止的进展以及原型激光雷达系统的细节。

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