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Mineralogical composition of sands in Meridiani Planum determined from Mars Exploration Rover data and comparison to orbital measurements

机译:根据火星探测漫游车的数据确定的Meridiani Planum沙的矿物学组成,并与轨道测量结果进行比较

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摘要

Constraints on the mineralogical composition of low-albedo, low-sulfur sands at Meridiani Planum are determined from Mars Exploration Rover (MER) Opportunity Miniature Thermal Emission Spectrometer (Mini-TES), Mossbauer, and Alpha Proton X-Ray Spectrometer measurements. Results of this work show that the sand is olivine basaltic in composition, with minor amounts of sulfate and a high-silica phase (glass or secondary amorphous silica). Measurements from all three instruments indicate that pyroxene is twice as abundant as olivine, and that the pyroxene composition is dominated by the low-calcium variety. The volume abundance of olivine is constrained to be 10-15%. Results from detailed analyses of MER data are used to ground truth the spectral emissivity and mineral abundances derived from orbit with Mars Global Surveyor TES data. TES-derived mineral abundances are within 5% of those derived from MER data, which is generally within the statistical errors associated with TES-derived phase abundances. The agreement lends support to global- and regional-scale variations in mineralogical composition determined from TES data in previous studies. An alternative method of least squares minimization is used for modeling the TES and Mini-TES data; the benefits of this method are demonstrated by comparison with conventional least squares techniques previously used by TES data users.
机译:Meridiani Planum的低反照率,低硫砂的矿物组成的约束条件是通过火星探测漫游者(MER)机会微型热发射光谱仪(Mini-TES),Mossbauer和Alpha质子X射线光谱仪的测量确定的。这项工作的结果表明,沙子的成分为橄榄石玄武质,具有少量的硫酸盐和高二氧化硅相(玻璃或次级无定形二氧化硅)。所有三种仪器的测量结果都表明,辉石的含量是橄榄石的两倍,并且辉石的组成主要是低钙品种。橄榄石的体积丰度被限制为10-15%。通过对MER数据进行详细分析得出的结果,可以根据火星全球测量师TES数据从轨道得出的光谱发射率和矿物丰度作为事实依据。 TES衍生的矿物丰度在MER数据的基础上,在5%以内,通常在与TES衍生的相丰度相关的统计误差之内。该协议为先前研究中由TES数据确定的全球和区域尺度的矿物成分变化提供了支持。最小二乘最小化的另一种方法用于对TES和Mini-TES数据进行建模。通过与TES数据用户先前使用的常规最小二乘法进行比较,证明了该方法的优势。

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    Rogers A. D.; Aharonson O.;

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