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Laser induced breakdown spectroscopy with picosecond pulse train

机译:基于皮秒脉冲序列的激光诱导击穿光谱

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Picosecond pulse train and nanosecond pulse were compared for laser ablation and laser induced breakdown spectroscopy (LIBS) measurements. A detailed study revealed that the picosecond pulse train ablation improved the quality of laser craters (symmetric crater walls and the absence of large redeposited droplets), which was explained by a smaller heat affected zone and suppression of melt splash. Greater plasma dimensions and brighter plasma emission were observed by gated imaging for picosecond pulse train compared to nanosecond pulse ablation. Increased intensity of atomic and ionic lines in gated and time integrated spectra provided better signal-to-noise ratio for picosecond pulse train sampling. Higher temperature and electron density were detected during first microsecond for the plasma induced by the picosecond pulse train. Improved shot-to-shot reproducibility for atomic/ionic line intensity in the case of picosecond pulse train LIBS was explained by more effective atomization of target material in plasma and better quality of laser craters. Improved precision and limits of detections were determined for picosecond pulse train LIBS due to better reproducibility of laser sampling and increased signal-to-noise ratio.
机译:比较了皮秒脉冲序列和纳秒脉冲在激光烧蚀和激光诱导击穿光谱(LIBS)测量中的作用。一项详细的研究表明,皮秒脉冲序列烧蚀提高了激光陨石坑的质量(对称的陨石坑壁和没有大的再沉积液滴),这可以通过较小的热影响区和抑制熔体飞溅来解释。与纳秒脉冲消融相比,皮秒脉冲序列的门控成像观察到更大的等离子体尺寸和更亮的等离子体发射。门控谱和时间积分谱中原子和离子谱的强度增加为皮秒脉冲序列采样提供了更好的信噪比。在皮秒脉冲序列诱导的等离子体的第一个微秒内检测到更高的温度和电子密度。在皮秒脉冲序列 LIBS 的情况下,原子/离子线强度的逐次再现性得到改善,这是由于等离子体中目标材料的雾化更有效,激光陨石坑的质量更好。由于激光采样的可重复性更好,信噪比更高,因此确定了皮秒脉冲序列 LIBS 的精度和检测限的提高。

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