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Standoff detection applying laser-induced breakdown spectroscopy at the DLR laser test range

机译:在DLR激光测试范围使用激光诱导击穿光谱进行对峙检测

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The DLR laser test range at Lampoldshausen is designed for a wide field of laser application studies under central European atmospheric conditions. Micrometeorological measurements are performed simultaneously and nearby to the laser propagation. The infrastructure is very suitable for the development of laser based standoff detection systems of biological, chemical, and explosive hazardous substances. In a first approach, laser-induced breakdown spectroscopy (LIBS) has been introduced for investigation of surface contaminants at distances up to 135 m. A basic LIBS set-up and LIBS spectra of selected samples using different excitation wavelengths from IR to UV are presented for detection at different distances. A Nd:YAG laser beam was focussed by a Cassegrain type telescope onto different samples. The light of the generated plasma plume was collected by a Newtonian telescope, analysed and detected by a broadband CCD-spectrometer system. The Nd:YAG laser yields pulse energies up to 800 mJ at a wavelength of 1064 nm and a pulse width of 8 ns. Optionally the second and third harmonics can be extracted at reduced energy. LIBS spectra produced on gold layers as thin as 5 nm deposited on silicon wafers were recorded for test of detection sensitivity and comparison of wavelengths effects. In addition, black powder as ordinary substance representing explosives was detected by LIBS technology. Spectra were recorded in single and repetitive pulsed scheme of the Nd:YAG laser at various daylight and atmospheric conditions
机译:兰帕兹豪森(Lampoldshausen)的DLR激光测试范围专为中欧大气条件下的广泛激光应用研究而设计。微气象测量是在激光传播附近并同时进行的。该基础结构非常适合开发基于激光的生物,化学和爆炸性有害物质的对峙检测系统。在第一种方法中,引入了激光诱导击穿光谱法(LIBS)来研究最远135 m处的表面污染物。给出了使用从IR到UV的不同激发波长的选定样品的基本LIBS设置和LIBS光谱,用于在不同距离处进行检测。用Cassegrain型望远镜将Nd:YAG激光束聚焦到不同的样品上。产生的等离子体羽流的光通过牛顿望远镜收集,并通过宽带CCD光谱仪系统进行分析和检测。 Nd:YAG激光器在1064 nm的波长和8 ns的脉冲宽度下产生高达800 mJ的脉冲能量。可选地,可以降低的能量提取二次谐波和三次谐波。记录沉积在硅晶片上的薄至5 nm的金层上产生的LIBS光谱,以测试检测灵敏度和比较波长效应。另外,通过LIBS技术检测到黑粉作为代表爆炸物的普通物质。在各种日光和大气条件下,以Nd:YAG激光的单脉冲重复方案记录光谱

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