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Asymmetric crustal growth on the Moon indicated by primitive farside highland materials

机译:原始的远侧高地物质表明月球上的地壳生长不对称

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The Moon's nearside and farside differ in topography ~1, crustal thickness ~2, mare volcanic activity ~3 and elemental concentrations ~4. The origin of this dichotomy is still unclear ~(5-7). It is also unknown whether the characteristics of the oldest crust, the anorthositic lunar highlands, reflect a different magmatic evolution of nearside and farside crust. Based on analyses of nearside highland rocks ~(8,9), it has been suggested that nearside crustal growth occurred from an evolved, iron-rich magma ocean ~(10), but information from the farside highlands is lacking. Here we apply an empirical algorithm to lunar reflectance spectra ~(11) from the Kaguya Spectral Profiler and report that magnesium contents relative to iron of primitive crustal highland rocks on the farside are higher than on the nearside. Our findings indicate that the farside crust consists of rocks that crystallized from less-evolved magma than the nearside crust. We conclude that the lunar dichotomy is directly linked to crystallization of the magma ocean and suggest that the composition of the magma ocean was more primitive at the time of crustal growth than previously estimated.
机译:月球的近侧和远侧的地形分别为〜1,地壳厚度〜2,母马火山活动〜3和元素浓度〜4。这种二分法的起源尚不清楚(5-7)。同样不清楚的是,最古老的地壳,即无脊椎动物的月球高地的特征,是否反映了近地壳和远地壳的不同岩浆演化。根据对近地高地岩石〜(8,9)的分析,有人认为近地壳的生长是由演化的富含铁的岩浆海〜(10)引起的,但缺乏来自远地高地的信息。在这里,我们对Kaguya光谱轮廓仪的月球反射光谱〜(11)应用了经验算法,并报告了远侧原始地壳高地岩石相对于铁的镁含量高于近侧。我们的发现表明,远岸地壳由比近地壳演化程度较小的岩浆结晶而成的岩石组成。我们得出的结论是,二分法与岩浆海洋的结晶直接相关,并表明在地壳生长时岩浆海洋的成分比原始估计的更为原始。

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