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Application of LIBS Spectroscopy for Remote Bulk Detection of Explosives

机译:LIBS光谱对爆炸物远程散装检测的应用

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Laser-induced breakdown spectroscopy (LIBS) is applied to characterize explosives and other materials such as plastics and soil. A short near-infrared laser pulse (X = 1064 nm, t < 1 ns, Ep = 0.4 mJ) is used to induce a plasma on the surface of the material to be investigated. When recording the time evolution of the LIBS intensities emitted by specific compounds at selected wavelengths (e.g. cyanide at 388 nm or atomic carbon at 247,9 nm) the ratio of "early" and "late" LIBS intensities is a measure to analyze different materials such as explosives, plastics or soil. Significant miniaturization of the LIBS apparatus is achieved by applying a microchiplaser as excitation source, fiber optics for light guiding and microprocessor controlled electronics for data accumulation and processing. Because of this miniaturization and the non-contact operation mode such a LIBS system can easily be integrated into a conventional mine detection needle but it also finds several applications in the field of explosive detection for anti-terror purposes.
机译:激光诱导的击穿光谱(Libs)用于表征爆炸物和其他材料,例如塑料和土壤。使用短近红外激光脉冲(x = 1064nm,t <1ns,Ep = 0.4 mj)用于在要研究的材料表面上诱导等离子体。当记录所选波长的特定化合物(例如,在388nm或247,90nm的原子碳时)的特定化合物发出的LIB的时间延伸在“早期”和“晚期”的LIBS强度的比例是分析不同材料的措施如炸药,塑料或土壤。通过将Microchiplase作为激发源,用于射击和微处理器控制电子产品的激发源,用于数据累积和处理来实现LIBS装置的显着小型化。由于这种小型化和非接触操作模式,这种Libs系统可以容易地集成到传统的矿山检测针中,但它还在爆炸性检测领域中发现了抗恐怖目的的几个应用。

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