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Effect of atmosphere on collinear double-pulse laser-induced breakdown spectroscopy

机译:气氛对共线双脉冲激光诱导击穿光谱的影响

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Double-pulse laser-induced breakdown spectroscopy (DP-LIBS) has been shown to enhance LIBS spectra. Several researchers have reported significant increases in signal-to-noise and/or spectral intensity compared to single-pulse (SP) LIBS. In addition to DP-LIBS, atmospheric conditions can also increase sensitivity. Thus, in this study, a collinear DP-LIBS scheme was used along with manipulation of the atmospheric conditions. The DP-LIBS scheme consisted of an initial 45-mJ pulse at 1,064-nm fired into a sample contained in a controlled atmospheric/vacuum chamber. A second analytical 45-mJ pulse at 1,064-nm was then fired 0 to 200 μs after and along the same path of the first pulse. Ar, He, and air at pressures ranging from atmospheric pressure to 1 Torr are introduced during DP-LIBS and SP-LIBS experiments. For a brass sample, significant increases in the spectral intensities of Cu and Zn lines were observed in DP-LIBS under Ar compared to DP-LIBS in air. It was also found that Cu and Zn lines acquired with SP-LIBS in Ar are nearly as intense as DP-LIBS in air. While collinear DP-LIBS is effective for increasing the sensitivity for some reduced atmospheres (i.e., Ar and air at 630 to 100 Torr and He at 300 Torr), the enhanced spectral intensity ultimately dropped off as the pressure was reduced below 10 Torr for all atmospheric compositions in the experimental arrangement used in this study. At all pressures of air and Ar, the plasma temperature remained rather constant with increased inter-pulse delays; however, the plasma temperature was more variable for different He gas pressures and inter-pulse delays.
机译:已显示双脉冲激光诱导击穿光谱(DP-LIBS)可以增强LIBS光谱。几位研究人员报告说,与单脉冲(SP)LIBS相比,信噪比和/或频谱强度显着增加。除了DP-LIBS,大气条件还可以提高灵敏度。因此,在这项研究中,共线DP-LIBS方案与大气条件的操纵一起使用。 DP-LIBS方案由发射到1064nm的45mJ初始脉冲组成,该脉冲发射到一个包含在受控的大气/真空室中的样品中。然后在第一个脉冲的相同路径之后并沿第一个脉冲的相同路径发射0-200μs的第二个1,064-nm的45 mJ分析脉冲。在DP-LIBS和SP-LIBS实验期间,引入了Ar,He和压力为大气压至1 Torr的空气。对于黄铜样品,与空气中的DP-LIBS相比,在Ar下的DP-LIBS中观察到Cu和Zn线的光谱强度显着增加。还发现用SP-LIBS在Ar中获得的Cu和Zn谱线几乎与空气中DP-LIBS一样强。虽然共线DP-LIBS可有效提高某些减少的气氛(即630至100 Torr的Ar和空气和300 Torr的He的空气)的灵敏度,但随着压力降低到10 Torr以下,增强的光谱强度最终下降本研究中使用的实验装置中的大气成分。在空气和氩气的所有压力下,随着脉冲间延迟的增加,等离子体温度保持相当恒定。然而,对于不同的氦气压力和脉冲间延迟,等离子体温度的变化更大。

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