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Study of Self-Absorption of Emission Magnesium Lines in Laser-Induced Plasmas on Calcium Hydroxide Matrix

机译:氢氧化钙基体上激光诱导等离子体中发射镁线的自吸收研究

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摘要

In this paper, we investigate the self-absorption of Mg I–II emission lines on laser-induced breakdown spectroscopy (LIBS) experiments. We produced the plasmas in air at atmospheric pressure by focusing a Nd:YAG laser onto a pellet of finely powdered calcium hydroxide with a concentration of 625 ppm of Mg and recorded the intensity profiles of Mg lines at different delay times after the laser pulse from plasmas generated with different laser energies. We carried out the analysis of the line profiles within the framework of a homogeneous plasma in local thermodynamic equilibrium by a computer algorithm that calculates the emission spectra and matches them to the experimental measurements. It allowed evaluation and compensation of self-absorption by using the spectroscopic information saved on the optical thicknesses of the lines. After that, we performed the characterization of the plasma and correlated the self-absorption features with the different trends of the temperature, the electron density, and the $Nl$ parameters obtained. At the early times of plasma evolution, we found that the fast expansion of the plume was dominant and the self-absorption effects are difficult to interpret within the current approach, supplying only qualitative information. On the other hand, at later times, the results obtained could be properly analyzed showing the practical usefulness of the method to provide valuable information for both basic and applied LIBS research.
机译:在本文中,我们研究了激光诱导击穿光谱(LIBS)实验中Mg I–II发射线的自吸收。我们通过将Nd:YAG激光聚焦到浓度为625 ppm的Mg的氢氧化钙细粒上,在大气压下在空气中产生等离子体,并记录了来自等离子体的激光脉冲后不同延迟时间的Mg线的强度分布用不同的激光能量产生。我们通过计算发射光谱并将其与实验测量值相匹配的计算机算法,在局部热力学平衡状态下对均质等离子体框架内的线轮廓进行了分析。通过使用保存在线条光学厚度上的光谱信息,可以评估和补偿自吸收。之后,我们进行了等离子体的表征,并将自吸收特征与温度,电子密度和获得的$ Nl $参数的不同趋势相关联。在等离子体演化的早期,我们发现羽状流的快速膨胀占主导地位,并且在当前方法中很难解释自吸收效应,仅提供定性信息。另一方面,在以后的时间里,可以对获得的结果进行适当的分析,表明该方法的实用性,为基础和应用LIBS研究提供有价值的信息。

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