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首页> 外文期刊>Journal of Applied Spectroscopy >INFLUENCE OF LASER RADIATION POWER DENSITY ON THE INTENSITY OF SPECTRAL LINES FOR MAIN COMPONENTS IN A CLAY LASER-INDUCED PLASMA
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INFLUENCE OF LASER RADIATION POWER DENSITY ON THE INTENSITY OF SPECTRAL LINES FOR MAIN COMPONENTS IN A CLAY LASER-INDUCED PLASMA

机译:激光辐射功率密度对粘土激光诱导等离子体主体组分谱线强度的影响

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摘要

We have studied the intensity of the spectral lines for the main components in clay: Al I 309.4 nm, Al II 358.7 nm, Mg II 279.6 nm, Ti II 323.6 nm vs. the position of the object relative to the focus of the optical system when the samples are exposed to single laser pulses from a YAG:Nd3+ laser. We have determined the permissible ranges for positioning the object relative to the focus of the optical system (positive and negative defocusing) for which there is practically no change in the reproducibility of the intensity for the spectral lines for red and white clay samples. We show that the position of the object relative to the focus of the optical system should be within the range Delta Z similar to +/- 1.5 mm for optimal laser pulse energies for the analyte spectral lines. We have calculated the radiation flux density for different laser pulse energies and different distances from the focus to the object. We have shown experimentally that reducing the radiation flux density leads to a decrease in the intensity of the analyte spectral lines.
机译:我们已经研究了粘土中主要成分的光谱线的强度:Al I 309.4nm,Al II 358.7nm,Mg II 279.6nm,Ti II 323.6nm Vs。物体相对于光学系统的焦点的位置当样品暴露于来自YAG:ND3 +激光的单个激光脉冲时。我们已经确定了用于将物体相对于光学系统(正极和负面散焦)的焦点定位物体的允许范围实际上没有变化的红色和白色粘土样本的光谱线强度的再现性。我们表明物体相对于光学系统的焦点的位置应在Δz的范围内,类似于+/- 1.5 mm,用于分析物谱线的最佳激光脉冲能量。我们已经计算了不同激光脉冲能量的辐射磁通密度,并且从焦点到物体的距离不同。我们已经通过实验显示,减少辐射磁通密度导致分析物谱线强度的降低。

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