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Standoff LIBS Measurements of Energetic Materials using a 266nmExcitation Laser

机译:使用266nm激发激光对高能材料进行远距离LIBS测量

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A Deep-UV LIBS system has been constructed for the standoff detection of Explosives, and potentially Chemical, Biological, Radiological, and Nuclear (CBRN) substances. A Q-Switched Nd:YAG Laser operating in at 266nm was used for excitation of the LIBS plasma and future Raman excitation. This plasma was enhanced by the means of a nearly simultaneous CO_2 laser which results in a method referred to as Townsend Effect Plasma Spectroscopy (TEPS). Spectra covering the range of 240 - 800nm at standoff distances are presented. The classical emission lines (i.e. C, N, O, H, etc) of the energetic samples were observed and a peak ratio technique was used to differentiate between benign and energetic samples of interest.
机译:已构建了深紫外LIBS系统,用于对炸药以及潜在的化学,生物,放射和核(CBRN)物质进行隔离检测。在266nm处工作的Q开关Nd:YAG激光器用于LIBS等离子体的激发和未来的拉曼激发。通过几乎同时的CO_2激光增强了这种等离子体,这导致了一种称为Townsend效应等离子体光谱法(TEPS)的方法。提出了在间隔距离处覆盖240-800nm范围的光谱。观察到高能样品的经典发射谱线(即C,N,O,H等),并使用峰比技术区分感兴趣的良性样品和高能样品。

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