首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Pre-flight calibration and initial data processing for the ChemCam laser-induced breakdown spectroscopy instrument on the Mars Science Laboratory rover
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Pre-flight calibration and initial data processing for the ChemCam laser-induced breakdown spectroscopy instrument on the Mars Science Laboratory rover

机译:火星科学实验室流动站上ChemCam激光诱导击穿光谱仪的飞行前校准和初始数据处理

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The ChemCam instrument package on the Mars Science Laboratory rover, Curiosity, is the first planetary science instrument to employ laser-induced breakdown spectroscopy (LIBS) to determine the compositions of geological samples on another planet. Pre-processing of the spectra involves subtracting the ambient light background, removing noise, removing the electron continuum, calibrating for the wavelength, correcting for the variable distance to the target, and applying a wavelength-dependent correction for the instrument response. Further processing of the data uses multivariate and univariate comparisons with a LIBS spectral library developed prior to launch as well as comparisons with several on-board standards post-landing. The level-2 data products include semi-quantitative abundances derived from partial least squares regression. A LIBS spectral library was developed using 69 rock standards in the form of pressed powder disks, glasses, and ceramics to minimize heterogeneity on the scale of the observation (350-550 um dia.). The standards covered typical compositional ranges of igneous materials and also included sulfates, carbonates, and phyllosilicates. The provenance and elemental and mineralogical compositions of these standards are described. Spectral characteristics of this data set are presented, including the size distribution and integrated irradiances of the plasmas, and a proxy for plasma temperature as a function of distance from the instrument. Two laboratory-based clones of ChemCam reside in Los Alamos and Toulouse for the purpose of adding new spectra to the database as the need arises. Sensitivity to differences in wavelength correlation to spectral channels and spectral resolution has been investigated, indicating that spectral registration needs to be within half a pixel and resolution needs to match within 1.5 to 2.6 pixels. Absolute errors are tabulated for derived compositions of each major element in each standard using PLS regression. Sources of errors are investigated and discussed, and methods for improving the analytical accuracy of compositions derived from ChemCam spectra are discussed.
机译:火星科学实验室流动站“好奇号”上的ChemCam仪器包装是第一款采用激光诱导击穿光谱法(LIBS)确定另一颗行星上地质样品成分的行星科学仪器。光谱的预处理包括减去环境光背景,消除噪声,消除电子连续体,校准波长,校正距目标的可变距离以及对仪器响应进行波长相关的校正。数据的进一步处理使用与发射前开发的LIBS谱库的多变量和单变量比较,以及着陆后与几种机载标准的比较。 2级数据产品包括从偏最小二乘回归得到的半定量丰度。使用69块岩石标准品(压粉盘,玻璃和陶瓷形式)开发了LIBS光谱库,以最大程度地减小观测范围(直径350-550 um)的异质性。这些标准涵盖了火成材料的典型组成范围,还包括硫酸盐,碳酸盐和页硅酸盐。描述了这些标准的来源以及元素和矿物组成。给出了该数据集的光谱特征,包括等离子体的尺寸分布和积分辐照度,以及等离子体温度随距仪器距离的函数的近似值。 ChemCam的两个基于实验室的克隆位于Los Alamos和图卢兹,目的是在需要时向数据库添加新光谱。已经研究了对与光谱通道相关的波长相关性和光谱分辨率的差异的敏感性,这表明光谱配准需要在半像素内,并且分辨率需要在1.5至2.6像素内匹配。使用PLS回归将每个标准中每个主要元素的衍生成分制成表格的绝对误差制成表格。对误差的来源进行了研究和讨论,并讨论了提高从ChemCam光谱得出的成分的分析准确性的方法。

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