摘要
基于自行研制的新型液体射流的激光诱导击穿光谱(LIBS)实验装置,研究了实验条件(如积分延时、脉冲间隔、激光能量等)对K元素单脉冲LIBS和双脉冲LIBS等离子体发射的影响.实验得知相对单脉冲激光激发,双脉冲激光激发可以显著提高等离子体发射谱线强度,增加谱线强度的衰减时间,提高LIBS数据的稳定性.通过最佳实验条件下K766.49nm谱线强度随溶液浓度的分析,得到该实验系统中,双脉冲激光激发时K元素的检测灵敏度和检测限约是单脉冲激光激发时的37倍.实验结果为双脉冲LIBS技术应用于水体金属的检测提供了一定依据.
The effects of the experimental conditions (integration delay time,inter pulse delay time, laser energy and so on) on the KC1 SP-LIBS(single pulse laser induced breakdown spectroscopy) and DP-LIBS (double pulse laser induced breakdown spectroscopy) were investigated using a self-developed new liquid jet. The intensity of line emission, time of line intensity-decay and LIBS stability were enhanced in DP- LIBS than SP-LIBS. It is found that the sensitivity and limit of detection (LOD) of K in DP-LIBS are 37 times those in SP-LIBS by curving the K 766.49nm spectra mean intensity with K metal concentration. The experimental results provide some basis for double pulse LIBS technique applying to the detection metallic elements in liquid.
出处
《原子与分子物理学报》
CAS
CSCD
北大核心
2013年第6期945-953,共9页
Journal of Atomic and Molecular Physics
基金
中国科学院合肥物质科学研究院院长基金(Y03AG21136)
关键词
激光诱导击穿等离子发射光谱
单脉冲激光
双脉冲激光
检测限
laser-induced breakdown plasma emission spectroscopy, single-pulse laser, dual-pulse laser, limit of detection