首页> 外文期刊>Journal of geophysical research. Planets >Lunar mare deposits associated with the Orientale impact basin:New insights into mineralogy, history, mode of emplacement, and relation to Orientale Basin evolution from Moon Mineralogy Mapper (M~3) data from Chandrayaan‐1
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Lunar mare deposits associated with the Orientale impact basin:New insights into mineralogy, history, mode of emplacement, and relation to Orientale Basin evolution from Moon Mineralogy Mapper (M~3) data from Chandrayaan‐1

机译:与东方撞击盆地相关的月球母马沉积物:来自钱德拉亚安-1的Moon Mineralogy Mapper(M〜3)数据对矿物学,历史,进位模式以及与东方盆地演化的关系的新见解

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摘要

Moon Mineralogy Mapper (M~3) image and spectral reflectance data are combined to analyze mare basalt units in and adjacent to the Orientale multiring impact basin. Models are assessed for the relationships between basin formation and mare basalt emplacement. Mare basalt emplacement on the western nearside limb began prior to the Orientale event as evidenced by the presence of cryptomaria. The earliest post‐Orientale‐event mare basalt emplacement occurred in the center of the basin (Mare Orientale) and postdated the formation of the Orientale Basin by about 60–100 Ma. Over the next several hundred million years, basalt patches were emplaced first along the base of the Outer Rook ring (Lacus Veris) and then along the base of the Cordillera ring (Lacus Autumni), with some overlap in ages. The latest basalt patches are as young as some of the youngest basalt deposits on the lunar nearside. M~3 data show several previously undetected mare patches on the southwestern margins of the basin interior. Regardless, the previously documented increase in mare abundance from the southwest toward the northeast is still prominent. We attribute this to crustal and lithospheric trends moving from the farside to the nearside, with correspondingly shallower density and thermal barriers to basaltic magma ascent and eruption toward the nearside. The wide range of model ages for Orientale mare deposits (3.70–1.66 Ga) mirrors the range of nearside mare ages, indicating that the small amount of mare fill in Orientale is not due to early cessation of mare emplacement but rather to limited volumes of extrusion for each phase during the entire period of nearside mare basalt volcanism. This suggests that nearside and farside source regions may be similar but that other factors, such as thermal and crustal thickness barriers to magma ascent and eruption, may be determining the abundance of surface deposits on the limbs and farside. The sequence, timing, and elevation of mare basalt deposits suggest that regional basin‐related stresses exerted control on their distribution. Our analysis clearly shows that Orientale serves as an excellent example of the early stages of the filling of impact basins with mare basalt.
机译:结合月球矿物学测绘仪(M〜3)图像和光谱反射率数据,分析了东方多环撞击盆地及其附近的玄武岩玄武岩单元。对盆地形成与母马玄武岩侵位之间的关系进行了模型评估。隐孢母虫的存在证明了东方玄武岩事件发生之前,西部玄武岩上就开始了马勒玄武岩的侵位。东方事件后最早的母马玄武岩侵占发生在盆地中心(东方马雷),并在东方盆地的形成之后约60-100 Ma。在接下来的几亿年里,玄武岩斑块首先沿着外环(Lacus Veris)的基部,然后沿着科尔迪拉拉环(Lacus Autumni)的基部安放,年龄上有些重叠。最新的玄武岩斑块与月球附近最年轻的玄武岩沉积层一样年轻。 M〜3数据显示盆地内部西南边缘的几个先前未发现的母马斑块。无论如何,先前记录的从西南向东北的母马丰度增加仍然很明显。我们将其归因于地壳和岩石圈趋势从远处向近处移动,密度和热障相应地变浅,从而使玄武岩浆上升和喷发向近处移动。东方母马沉积物的模型年龄范围很广(3.70–1.66 Ga)反映了近侧母马年龄的范围,这表明东方马中少量母马填充不是由于母马安置的早期停止,而是由于挤出量有限在整个附近的玄武岩玄武岩火山活动期间。这表明近端和远端源区可能相似,但其他因素(如对岩浆上升和喷发的热和地壳厚度壁垒)可能决定了四肢和远端的表面沉积物的丰度。母马玄武岩沉积物的序列,时间和高度表明,与盆地有关的应力对其分布有控制作用。我们的分析清楚地表明,Orientalee是用玄武岩充填冲击盆地早期的一个很好的例子。

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