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Investigation on self-absorption reduction in laser-induced breakdown spectroscopy assisted with spatially selective laser-stimulated absorption

机译:空间选择性激光激发吸收辅助的激光诱导击穿光谱中自吸收减少的研究

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摘要

The method of spatially selective laser-stimulated absorption (SS-LSA) was proposed to reduce self-absorption in laser-induced breakdown spectroscopy (LIBS). Through scanning intensity maps of analytes, it was discovered that elemental distribution was inhomogeneous in the formed plasma. Taking copper (Cu) and chromium (Cr) elements in steel as examples, the distribution of Cu and Cr has its own characteristics. By focusing the laser beam on the optimal locations of the plasma with an optical parametric oscillator (OPO) wavelength-tunable laser, the linear determination coefficient (R-2 factor) for Cu and Cr elements can reach 0.993 and 0.999, respectively. For Cu determination, compared with LIBS and LSA-LIBS, the root-mean-square error of cross-validation (RMSECV) of SS-LSA-LIBS decreased by 81 and 52%, respectively. The analytical accuracy of the quantitative analysis was much higher than those of conventional LIBS and LSA-LIBS, which indicates that the proposed method can effectively reduce self-absorption and improve LIBS analytical performance.
机译:提出了一种空间选择性激光激发吸收法(SS-LSA),以减少激光诱导击穿光谱法(LIBS)中的自吸收。通过扫描分析物的强度图,发现在形成的血浆中元素分布不均匀。以钢中的铜(Cu)和铬(Cr)元素为例,Cu和Cr的分布具有自己的特征。通过使用光参量振荡器(OPO)波长可调激光器将激光束聚焦在等离子体的最佳位置上,Cu和Cr元素的线性测定系数(R-2因子)可以分别达到0.993和0.999。对于铜的测定,与LIBS和LSA-LIBS相比,SS-LSA-LIBS的交叉验证均方根误差(RMSECV)分别降低了81%和52%。定量分析的分析精度远高于常规LIBS和LSA-LIBS,表明该方法可有效降低自吸收并提高LIBS的分析性能。

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