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首页> 外文期刊>Journal of geophysical research. Planets >Global assessment of pure crystalline plagioclase across the Moon and implications for the evolution of the primary crust
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Global assessment of pure crystalline plagioclase across the Moon and implications for the evolution of the primary crust

机译:全球对月球上纯晶体斜长石的评估及其对主要地壳演化的影响

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摘要

Recent advancements in visible to near infrared orbital measurements of the lunar surface have allowed the character and extent of the primary anorthositic crust to be studied at unprecedented spatial and spectral resolutions. Here we assess the lunar primary anorthositic crust in global context using a spectral parameter tool for Moon Mineralogy Mapper data to identify and map Fe-bearing crystalline plagioclase based on its diagnostic 1.25 μm absorption band. This allows plagioclase-dominated rocks, specifically anorthosites, to be unambiguously identified as well as distinguished from lithologies with minor to trace amounts of mafic minerals. Low spatial resolution global mosaics and high spatial resolution individual data strips covering more than 650 targeted craters were analyzed to identify and map the mineralogy of spectrally pure regions as small as ~400m in size. Spectrally, pure plagioclase is identified in approximately 450 targets located across the lunar surface. Diviner thermal infrared (TIR) data are analyzed for 37 of these nearly monomineralic regions in order to understand the compositional variability of plagioclase (An#) in these areas. The average An# for each spectrally pure region is estimated using new laboratory measurements of a well-characterized anorthite (An_(96)) sample. Diviner TIR results suggest that the plagioclase composition across the lunar highlands is relatively uniform, high in calcium content, and consistent with plagioclase compositions found in the ferroan anorthosites (An_(94-98)). Our results confirm that spectrally pure anorthosite is widely distributed across the lunar surface, and most exposures of the ancient anorthositic crust are concentrated in regions of thicker crust surrounding impact basins on the lunar nearside and farside. In addition, the scale of the impact basins and the global nature and distribution of pure plagioclase requires a coherent zone of anorthosite of similar composition in the lunar crust supporting its formation from a single differentiation event like a magma ocean. Our identifications of pure anorthosite combined with the GRAIL crustal thickness model suggest that pure anorthosite is currently observed at a range of crustal thickness values between 9 and 63 km and that the primary anorthositic crust must have been at least 30 km thick.
机译:最终在月球表面可见到近红外轨道测量的进步使得可以在前所未有的空间和光谱分辨率下研究原发性尖峰外壳的特征和程度。在这里,我们使用用于月球矿物学映射器数据的光谱参数工具在全球上下文中评估了月球原始的地壳,以基于其诊断1.25μm的吸收带识别和映射含含素的晶体斜长石。这允许斜长石主导的岩石,特别是垂直石,并可以明确鉴定,并与具有较小的岩石矿物矿物质的岩性区分开。分析了低空间分辨率的全球镶嵌和高空间分辨率的单个数据带,分析了超过650个靶向陨石坑的单个数据带,以识别和绘制频谱纯净区域的矿物质学,大小约为400m。从光谱上讲,纯斜长石在位于月球表面的大约450个目标中鉴定出来。为了了解这些区域中斜长石(AN#)的组成变异性,分析了其中37个几乎单矿区域的37个数据,分析了三个几乎单矿物区域的占卜者热红外(TIR)数据。使用特征良好的北极石(AN_(96))样品的新实验室测量估算每个频谱纯区域的平均#和#。 Diviner TIR的结果表明,跨月球高地的斜长石组成相对均匀,钙含量较高,并且与Ferroan Anorthosites中发现的斜长石组成一致(AN_(94-98))。我们的结果证实,光谱纯净的底石广泛分布在月球表面,大多数对古老的垂头式外壳的暴露都集中在围绕撞击盆地较厚的厚层覆盖层的区域。此外,冲击盆地的规模以及纯斜长石的全球性质和分布需要在月球中具有相似成分的坡度连贯的区域,从而从岩浆海洋等单个分化事件中支持其形成。我们对纯坡道与Grail Crustal厚度模型相结合的识别表明,目前在9至63 km之间的一系列地壳厚度值处观察到纯坡道,而主要的尖锐岩壳必须至少为30 km。

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