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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Extraction of compositional and hydration information of sulfates from laser-induced plasma spectra recorded under Mars atmospheric conditions - Implications for ChemCam investigations on Curiosity rover
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Extraction of compositional and hydration information of sulfates from laser-induced plasma spectra recorded under Mars atmospheric conditions - Implications for ChemCam investigations on Curiosity rover

机译:从在火星大气条件下记录的激光诱导等离子体光谱中提取硫酸盐的组成和水化信息-ChemCam研究对好奇号漫游车的意义

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Given the volume of spectral data required for providing accurate compositional information and thereby insight in mineralogy and petrology from laser-induced breakdown spectroscopy (UBS) measurements, fast data processing tools are a must. This is particularly true during the tactical operations of rover-based planetary exploration missions such as the Mars Science Laboratory rover, Curiosity, which will carry a remote LIBS spectrometer in its science payload. We have developed: an automated fast pre-processing sequence of algorithms for converting a series of LIBS spectra (typically 125) recorded from a single target into a reliable SNR-enhanced spectrum; a dedicated routine to quantify its spectral features; and a set of calibration curves using standard hydrous and multi-cation sulfates. These calibration curves allow deriving the elemental compositions and the degrees of hydration of various hydrous sulfates, one of the two major types of secondary minerals found on Mars. Our quantitative tools are built upon calibration-curve modeling, through the correlation of the elemental concentrations and the peak areas of the atomic emission lines observed in the LIBS spectra of standard samples. At present, we can derive the elemental concentrations of K, Na, Ca, Mg, Fe, Al, S, O, and H in sulfates, as well as the hydration degrees of Ca- and Mg-sulfates, from LIBS spectra obtained in both Earth atmosphere and Mars atmospheric conditions in a Planetary Environment and Analysis Chamber (PEACh). In addition, structural information can be potentially obtained for various Fe-sulfates.
机译:给定提供准确的成分信息所需的光谱数据量,并由此通过激光诱导击穿光谱(UBS)测量了解矿物学和岩石学,因此必须有快速的数据处理工具。在基于火星的行星探测任务(例如火星科学实验室火星“好奇号”)的战术操作中,尤其如此,它将在其科学有效载荷中携带一个远程LIBS光谱仪。我们已经开发了:一种自动快速预处理算法序列,用于将从单个目标记录的一系列LIBS频谱(通常为125个)转换为可靠的SNR增强频谱;量化其光谱特征的专用程序;以及使用标准含水硫酸盐和多阳离子硫酸盐的一组校准曲线。这些校准曲线可以推导各种水合硫酸盐的元素组成和水合度,这是火星上发现的两种主要次生矿物之一。我们的定量工具建立在校准曲线模型的基础上,通过元素浓度与标准样品的LIBS光谱中观察到的原子发射谱线的峰面积的相关性。目前,我们可以从LIBS光谱中获得硫酸根中K,Na,Ca,Mg,Fe,Al,S,O和H的元素浓度,以及Ca和Mg硫酸盐的水合度。行星环境和分析室(PEACh)中的地球大气和火星大气条件。另外,可以潜在地获得各种硫酸铁的结构信息。

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