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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Mineralogy of Mare Serenitatis on the near side of the Moon based on Chandrayaan-1 Moon Mineralogy Mapper (M~3) observations
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Mineralogy of Mare Serenitatis on the near side of the Moon based on Chandrayaan-1 Moon Mineralogy Mapper (M~3) observations

机译:基于Chandrayaan-1 Moon Mineralogy Mapper(M〜3)观测的月球近侧母马Serenitatis的矿物学

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摘要

Spectral analysis of Mare Serenitatis has been carried out using Chandrayaan-1 Moon Mineralogy Mapper (M~3) data in order to map the compositional diversity of the basaltic units that exist in the basin. Mare Serenitatis is characterized by multiple basaltic flows of different ages indicating a prolonged volcanism subsequent to the basin formation event. Reflectance spectra of fresh craters from the Mare Serenitatis have been analyzed to study the nature and location of the spectral absorption features around 1- and 2-μm respectively, arising due to the electronic charge transition of Fe~(2+) in the crystal lattice of pyroxenes and/or olivine. Chandrayaan-1 M~3 data have been utilized to obtain an Integrated Band Depth (IBD) mosaic of the Serenitatis basin. Based on the spectral variations observed in the IBD mosaic, 13 spectral units have been mapped in the Mare Serenitatis. In the present study, we have also derived spectral band parameters, namely, band center, band strength, band area and band area ratio from the M~3 data to study the mineralogical and compositional variations amongst the basaltic units of the studied basin. On the basis of spectral band parameter analysis, the pyroxene compositions of the basaltic units have been determined, which vary from low to intermediate end of the high-Ca pyroxene and probably represent a sub-calcic to calcic augite compositional range. Detailed spectral analyses reveal little variations in the mafic mineralogy of the mare basalts in terms of pyroxene chemistry. The uniformity in pyroxene composition across the basaltic units of Mare Serenitatis, therefore, suggest a probably stable basaltic source region, which might not have experienced large-scale fractionation during the prolonged volcanism that resulted in filling of the large Serenitatis basin.
机译:为了绘制盆地中存在的玄武岩单元的组成多样性,已使用Chandrayaan-1 Moon Mineralogy Mapper(M〜3)数据进行了马雷纳雷的光谱分析。母马Serenitatis的特征是不同年龄的多次玄武岩流,表明盆地形成事件后火山活动延长。分析了来自Mare Serenitatis的新鲜陨石坑的反射光谱,研究了由于晶格中Fe〜(2+)的电子电荷跃迁而产生的1-μm和2-μm附近光谱吸收特征的性质和位置辉石和/或橄榄石。利用Chandrayaan-1 M〜3数据获得了Serenitatis盆地的综合带深度(IBD)镶嵌图。根据在IBD马赛克中观察到的光谱变化,在Mare Serenitatis中已映射了13个光谱单位。在本研究中,我们还从M〜3数据中得出了谱带参数,即谱带中心,谱带强度,谱带面积和谱带面积比,以研究该盆地玄武岩单元的矿物学和组成变化。根据光谱带参数分析,确定了玄武岩单元的辉石组成,其高钙辉石的低端至中端不等,可能代表了亚钙质至钙质的辉石组成范围。详细的光谱分析显示,就辉石化学而言,母马玄武岩的镁铁矿矿物学变化很小。因此,整个Mare Serenitatis玄武岩单元中辉石成分的均一性表明,可能是一个稳定的玄武岩源区,在长时间的火山活动中塞伦尼蒂斯大盆地的充填期间可能未经历大规模的分馏。

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