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Plasma Temperature and Electron Density Determination Using Laser-Induced Breakdown Spectroscopy (LIBS) in Earth’s and Mars’s Atmospheres

机译:使用激光诱导的击穿光谱(Libs)在地球和火星的大气中使用的等离子体温度和电子密度测定

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The purpose of this study was to calculate and compare the plasma temperatures and electron densities from the laser-induced breakdown spectroscopy (LIBS) data collected by NASA’s Martian rover and compare them to samples measured in Earth’s atmosphere. Using the Boltzmann plots, LIBS plasma temperatures were obtained for each site. The analysis focused on titanium lines that were located in the spectral region between 300 and 310 nm. The electron density was measured using the Stark broadening of the hydrogen line at 656.6 nm; the full width at half maximum (FWHM) of this line can be measured and correlated to the electron density of the plasma. Due to a neighboring carbon peak with the hydrogen line seen in many of the spectra from the Martian sites, the FWHM needed to be calculated using a computer program that completed the other side of the hydrogen line and then it calculated the FWHM for those data samples affected by this. The plasma temperatures and electron densities of the Martian sites were compared to LIBS samples taken on Earth.
机译:本研究的目的是计算和比较由美国航空航天局的火山火山火车站收集的激光诱导的击穿光谱(LIBS)数据的等离子体温度和电子密度,并将它们与在地球大气中测量的样本进行比较。使用Boltzmann图,为每个部位获得LIBS等离子体温度。分析聚焦在位于300至310nm之间的光谱区域中的钛系。使用在656.6nm处的氢线的显着扩展测量电子密度;可以测量该线的半最大(FWHM)的全宽,并与等离子体的电子密度相关。由于来自Martian站点的许多光谱中的邻近碳峰值,因此需要使用完成氢线的另一侧的计算机程序来计算FWHM,然后计算这些数据样本的FWHM受此影响。将火星部位的等离子体温度和电子密度与在地球上采集的Libs样品进行比较。

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