首页> 外文期刊>Icarus: International Journal of Solar System Studies >The Apollo peak-ring impact basin: Insights into the structure and evolution of the South Pole-Aitken basin
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The Apollo peak-ring impact basin: Insights into the structure and evolution of the South Pole-Aitken basin

机译:Apollo峰环冲击盆地:探讨南极 - AITKEN盆地的结构和演变

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摘要

The 492 km-diameter Apollo impact basin post-dates, and is located at the inner edge of, the similar to 2240 km diameter South Pole-Aitken (SPA) basin, providing an opportunity to assess the SPA substructure and lateral heterogeneity. Gravity Recovery and Interior Laboratory gravity data suggest an average crustal thickness on the floor of SPA of similar to 20 km and within the Apollo basin of similar to 5 km, yet remote sensing data reveal no conclusive evidence for the presence of exposed mantle material. We use the iSALE shock physics code to model the formation of the Apollo basin and find that the observational data are best fit by the impact of a 40 km diameter body traveling at 15 km/s into 20-40 km thick crustal material. These results strongly suggest that the Apollo impact occurred on ejecta deposits and collapsed crustal material of the SPA basin and could help place constraints on the location, size and geometry of the SPA transient cavity. The peak ring in the interior of Apollo basin is plausibly interpreted to be composed of inwardly collapsed lower crustal material that experienced peak shock pressures in excess of 35 GPa, consistent with remote sensing observations that suggest shocked plagioclase. Proposed robotic and/or human missions to SPA and Apollo would present an excellent opportunity to test the predictions of this work and address many scientific questions about SPA basin evolution and structure. (C) 2018 Elsevier Inc. All rights reserved.
机译:492公里直径的Apollo冲击盆地日期之后,位于类似于2240公里直径的南极 - Aitken(SPA)盆地,提供了评估SPA子结构和横向异质性的机会。重力恢复和内部实验室重力数据表明平均地壳厚度在水疗中心的平均地区厚度与20公里外,类似于5公里的Apollo盆地,但遥感数据没有显示出暴露的披风材料的存在的确定证据。我们使用Syale Scop Meachics代码来模拟Apollo盆地的形成,并发现观察数据最适合于40公里直径的身体以15km / s成20-40 km厚的地壳材料。这些结果强烈表明,SPA盆地的喷射沉积物和折叠地壳材料上发生了Apollo冲击,可以帮助将限制放在水疗中心瞬态腔的位置,尺寸和几何形状上。 Apollo盆地内部的峰值环是可被纯粹的解释为由向内塌陷的较低的地壳材料构成,其经历了超过35GPa的峰值冲击压力,与遥感观察结果一致,这表明震惊的Plagioclase。提出的机器人和/或人类任务到SPA和Apollo将出现一个出色的机会,以测试这项工作的预测,并解决了关于SPA盆地演化和结构的许多科学问题。 (c)2018年Elsevier Inc.保留所有权利。

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