Huang Huan, Yang Lih-Mei, Liu Jian
PolarOnyx, Inc., San Jose, California 94538, USA.
Appl Opt. 2012 Dec 20;51(36):8669-76. doi: 10.1364/AO.51.008669.
This paper presents what is to our knowledge the first evaluation of laser-induced breakdown spectroscopy (LIBS) studies on elemental composition detection and identification by employing a femtosecond (fs) fiber laser. Qualitative LIBS spectra were obtained in ambient air using a 1030 nm fs fiber laser. Specific ion and neutral emission lines of different materials have been characterized, including metal, metal alloy, semiconductor, and glass. The performance and LIBS spectra of an intensified CCD (ICCD) system and a nonintensified CCD system were compared. Time-resolved emission spectra depicting the detailed plasma evolution was collected from sub-spot-size craters. The gated ICCD gives improved signal-to-noise ratio by a factor of 20 compared with a nongated, nonintensified CCD system. This shows a potential portable and field-deployable LIBS system for versatile and rapid analysis of chemicals and special materials.
本文介绍了据我们所知首次利用飞秒(fs)光纤激光器对激光诱导击穿光谱(LIBS)进行元素组成检测与识别的研究。使用1030 nm飞秒光纤激光器在环境空气中获得了定性LIBS光谱。已对不同材料(包括金属、金属合金、半导体和玻璃)的特定离子和中性发射线进行了表征。比较了增强型电荷耦合器件(ICCD)系统和非增强型电荷耦合器件系统的性能及LIBS光谱。从亚光斑尺寸的坑中收集了描绘详细等离子体演化的时间分辨发射光谱。与非门控、非增强型电荷耦合器件系统相比,门控ICCD的信噪比提高了20倍。这表明存在一种潜在的便携式和可现场部署的LIBS系统,可用于对化学品和特殊材料进行通用且快速的分析。