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Optimize of LIBS Setup to the Determination of Laser Breakdown Power of Writing Inks

机译:优化LIBS设置以确定书写墨水的激光击穿能力

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摘要

Laser-induced breakdown spectroscopy system (LIBS) had been designed to the determinate of the best ionization laser power for analysis of the writing inks via analysis induced plasma emission. Passively Q-Switched Nd:YAG laser at the fundamental wavelength 1064 nm with different energies (60 mJ,80mJ, 100 mJ, 200 mJ, 300mJ, 400mJ and 500 mJ) with (10 ns) pulse duration, the laser beam was focused via converging lens with focal length (100 mm) that generates different power intensity, optical spectrum analysis system used was within (Si-CCD) array detector, within spectrum range of (200 - 900 nm) with (0.8 nm) optical resolution. Use A4 sheets of commercially available standard white office paper with 2 Ballpoint pens and 1 Gel pen as samples. Show the results that the laser energy (80 mJ) with ( power density, was the best power to generate plasma homogeneous for all component writing inks and ionize it without effect on the paper material.
机译:设计了激光诱导击穿光谱系统(LIBS),以确定通过分析诱发的等离子体发射来分析书写墨水的最佳电离激光功率。无源Q开关Nd:YAG激光器在1064 ns的脉冲持续时间下以不同的能量(60 mJ,80mJ,100 mJ,200 mJ,300mJ,400mJ和500 mJ)在1064 nm的基波波长下聚焦焦距(100 mm)会产生不同功率强度的会聚透镜,所使用的光谱分析系统位于(Si-CCD)阵列检测器中,光谱范围为(200-900 nm),光学分辨率为(0.8 nm)。使用A4张市售标准白色办公用纸,以及2支圆珠笔和1支中性笔作为样本。结果表明,功率密度为(80 mJ)的激光能量是产生均质等离子体的所有组分书写墨水并对其电离而不影响纸张材料的最佳功率。

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