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Standoff Detection of Explosive Molecules Using Nanosecond Gated Raman Spectroscopy

机译:使用纳秒级门控拉曼光谱的爆炸性分子对峙检测

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摘要

Recently, improvised explosive device (IED) has been a serious threat for many countries. One of the approaches to alleviate this threat is standoff detection of explosive molecules used in IEDs. Raman spectroscopy is a prospective method among many technologies under research to achieve this goal. It provides unique information of the target materials, through which the ingredients used in IEDs can be analyzed and identified. The main problem of standoff Raman spectroscopic detection is the large background noise hindering weak Raman signals from the target samples. Typical background noise comes from both ambient fluorescent lights indoor and sunlight outdoor whose intensities are usually much larger than that of Raman scattering from the sample. Under the proper condition using pulse laser and ICCD camera with nanosecond pulse width and gating technology, we succeed to separate and remove these background noises from Raman signals. For this experiment, we build an optical system for standoff detection of explosive molecules. We use 532 nm, 10 Hz, Q-switching Nd:YAG laser as light source, and ICCD camera triggered by laser Q-switching time with proper gate delay regarding the flight time of Raman from target materials. Our detection system is successfully applied to detect and identify more than 20 ingredients of IEDs including TNT, RDX, and HMX which are located 10 to 54 meters away from the system.
机译:最近,简易爆炸装置(IED)已成为许多国家的严重威胁。减轻这种威胁的方法之一是对IED中使用的爆炸性分子进行隔离检测。拉曼光谱法是许多正在研究中的实现这一目标的前瞻性方法。它提供目标材料的独特信息,通过这些信息可以分析和识别IED中使用的成分。隔离拉曼光谱检测的主要问题是大背景噪声阻碍了来自目标样品的微弱拉曼信号。典型的背景噪声来自室内的环境荧光灯和室外的日光,其强度通常远大于样品中拉曼散射的强度。在适当的条件下,使用具有纳秒级脉冲宽度和门控技术的脉冲激光和ICCD摄像机,我们成功地从拉曼信号中分离并消除了这些背景噪声。对于本实验,我们构建了一个光学系统,用于对爆炸性分子进行距离检测。我们使用532 nm,10 Hz,Q开关Nd:YAG激光作为光源,并使用由激光Q开关时间触发的ICCD相机,并具有适当的闸门延迟,这取决于拉曼从目标材料的飞行时间。我们的检测系统已成功应用于检测和识别距离系统10至54米的20多种IED成分,包括TNT,RDX和HMX。

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