Hou Jiajia, Zhang Lei, Yin Wangbao, Yao Shunchun, Zhao Yang, Ma Weiguang, Dong Lei, Xiao Liantuan, Jia Suotang
Opt Express. 2017 Sep 18;25(19):23024-23034. doi: 10.1364/OE.25.023024.
A novel self-absorption-free laser-induced breakdown spectroscopy (SAF-LIBS) technique is proposed to directly capture the optically thin spectral line by matching the measured doublet atomic lines intensity ratios with the theoretical one. To realize the experimental SAF-LIBS, the integration time, the fiber collection angle, and the delay time are optimized. The optically thin conditions are validated by comparing the linearity of Boltzmann plots with the traditional self-absorption (SA) correction method and evaluating the SA coefficients. The applicability and limitation of SAF-LIBS on element concentration and laser energy are also discussed. Univariate quantitative analysis results show that, compared with ordinary LIBS, the average absolute error of aluminum concentration has been reduced by an order of magnitude, which proves that this SAF-LIBS technique is qualified to realize accurate chemical composition measurements.
提出了一种新型的无自吸收激光诱导击穿光谱(SAF-LIBS)技术,通过将测量的双线原子线强度比与理论值相匹配,直接捕获光学薄光谱线。为实现实验性的SAF-LIBS,对积分时间、光纤收集角度和延迟时间进行了优化。通过将玻尔兹曼图的线性与传统自吸收(SA)校正方法进行比较并评估SA系数,验证了光学薄条件。还讨论了SAF-LIBS在元素浓度和激光能量方面的适用性和局限性。单变量定量分析结果表明,与普通LIBS相比,铝浓度的平均绝对误差降低了一个数量级,这证明该SAF-LIBS技术有资格实现精确的化学成分测量。