首页> 外文OA文献 >Assessing the shock state of the lunar highlands: Implications for the petrogenesis and chronology of crustal anorthosites.
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Assessing the shock state of the lunar highlands: Implications for the petrogenesis and chronology of crustal anorthosites.

机译:评估月球高地的震荡状态:对地壳斜长岩的岩石成因和年代学的影响。

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摘要

Our understanding of the formation and evolution of the primary lunar crust is based on geochemical systematics from the lunar ferroan anorthosite (FAN) suite. Recently, much effort has been made to understand this suite’s petrologic history to constrain the timing of crystallisation and to interpret FAN chemical diversity. We investigate the shock histories of lunar anorthosites by combining Optical Microscope (OM) ‘cold’ cathodoluminescence (CL)-imaging and Fourier Transform Infrared (FTIR) spectroscopy analyses. In the first combined study of its kind, this study demonstrates that over ~4.5 Ga of impact processing, plagioclase is on average weakly shocked (<15 GPa) and examples of high shock states (>30 GPa; maskelynite) are uncommon. To investigate how plagioclase trace-element systematics are affected by moderate to weak shock (~5 to 30 GPa) we couple REE+Y abundances with FTIR analyses for FAN clasts from lunar meteorite Northwest Africa (NWA) 2995. We observe weak correlations between plagioclase shock state and some REE+Y systematics (e.g., La/Y and Sm/Nd ratios). This observation could prove significant to our understanding of how crystallisation ages are evaluated (e.g., plagioclase-whole rock Sm-Nd isochrons) and for what trace-elements can be used to differentiate between lunar lithologies and assess magma source compositional differences.
机译:我们对月球初生地壳的形成和演化的了解是基于月球铁锰钙铁矿(FAN)套件中的地球化学系统学。最近,人们做出了很多努力来了解该套件的岩石学历史,以限制其结晶时间并解释FAN的化学多样性。我们通过结合光学显微镜(OM)的“冷”阴极发光(CL)成像和傅里叶变换红外(FTIR)光谱分析来研究月球原位生物的休克历史。在同类研究的第一个联合研究中,该研究表明,在超过约4.5 Ga的冲击过程中,斜长石平均受到弱冲击(<15 GPa),而高冲击状态的实例(> 30 GPa; maskelynite)并不常见。为了研究斜长石痕量元素系统如何受到中度至弱电击(〜5至30 GPa)的影响,我们将REE + Y丰度与FTIR分析结合使用了来自西北非洲月球陨石(NWA)2995的FAN碎片。我们观察到斜长石酶之间的弱相关性冲击状态和一些REE + Y系统分析(例如La / Y和Sm / Nd比)。这一观察结果可能对我们了解如何评估结晶年龄(例如斜长石-全岩石Sm-Nd等时线)以及哪些微量元素可用于区分月球岩性和评估岩浆源成分差异具有重要意义。

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