The Pre-Maria Geologic History of the Imbrium Basin Preserved by Remnant Highlands Massifs

IF 4 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
B. D. Byron, C. M. Elder, L. Pigue, J.-P. Williams
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Abstract

The Imbrium basin is one of the largest and youngest impact basins on the Moon. It has experienced multiple phases of volcanism that filled the basin with basaltic lavas, obscuring most evidence of geologic activity prior to the emplacement of mare basalts. Elevated basin ring massifs, however, can retain some of that history due to their higher topographic elevation compared to the maria. In this work, we use thermal infrared and radar data sets in conjunction with compositional data sets to establish the presence of external material that has been deposited on top of several remnant basin massifs of Imbrium. These massifs originally formed as part of the Imbrium basin ring structure, but their material properties indicate that they have since experienced modification from outside sources. In southwest Imbrium, we present evidence that Mons Vinogradov was mantled by rock-poor, glassy pyroclastic material prior to the deposition of Eratosthenian-era basalts immediately surrounding the mons. In northern Imbrium, we find that Montes Recti and Montes Teneriffe were not affected by pyroclastic volcanism but rather were mantled by rock- and glass-poor ejecta materials likely related to the Iridum basin impact. At Mons Piton in eastern Imbrium, we see weaker glass signatures than those found at Mons Vinogradov, which we suggest could be due to a thin layer of reworked or partially buried glassy pyroclastic material. These results indicate that basin ring massifs provide a mechanism for studying the geologic history of lunar impact basins.

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残高地块体保存的雨盆前玛丽亚期地质史
雨云盆地是月球上最大和最年轻的撞击盆地之一。它经历了多个阶段的火山活动,使盆地充满了玄武岩熔岩,掩盖了海玄武岩就位之前的大部分地质活动证据。然而,与海陆相比,隆起的盆地环地块由于其更高的地形海拔,可以保留一些历史。在这项工作中,我们将热红外和雷达数据集与成分数据集结合使用,以确定在Imbrium的几个残余盆地块体顶部沉积的外部物质的存在。这些地块最初是作为Imbrium盆地环构造的一部分形成的,但它们的物质性质表明它们经历了外部来源的改造。在Imbrium的西南部,我们提供的证据表明,在埃拉托斯特尼时代的玄武岩沉积之前,维诺格拉多夫山被岩石贫乏的玻璃状火山碎屑物质覆盖。在Imbrium北部,我们发现Montes Recti和Montes Teneriffe没有受到火山碎屑火山作用的影响,而是被可能与Iridum盆地撞击有关的岩石和玻璃贫乏的喷出物所覆盖。在Imbrium东部的Mons Piton,我们看到的玻璃特征比在Mons Vinogradov发现的要弱,我们认为这可能是由于一层薄的重新加工或部分掩埋的玻璃状火山碎屑物质。这些结果表明,盆地环块体为研究月球撞击盆地的地质历史提供了一种机制。
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来源期刊
Journal of Geophysical Research: Planets
Journal of Geophysical Research: Planets Earth and Planetary Sciences-Earth and Planetary Sciences (miscellaneous)
CiteScore
8.00
自引率
27.10%
发文量
254
期刊介绍: The Journal of Geophysical Research Planets is dedicated to the publication of new and original research in the broad field of planetary science. Manuscripts concerning planetary geology, geophysics, geochemistry, atmospheres, and dynamics are appropriate for the journal when they increase knowledge about the processes that affect Solar System objects. Manuscripts concerning other planetary systems, exoplanets or Earth are welcome when presented in a comparative planetology perspective. Studies in the field of astrobiology will be considered when they have immediate consequences for the interpretation of planetary data. JGR: Planets does not publish manuscripts that deal with future missions and instrumentation, nor those that are primarily of an engineering interest. Instrument, calibration or data processing papers may be appropriate for the journal, but only when accompanied by scientific analysis and interpretation that increases understanding of the studied object. A manuscript that describes a new method or technique would be acceptable for JGR: Planets if it contained new and relevant scientific results obtained using the method. Review articles are generally not appropriate for JGR: Planets, but they may be considered if they form an integral part of a special issue.
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