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A multiple-impact origin for the Moon

机译:月球的多重影响原点

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摘要

The hypothesis of lunar origin by a single giant impact can explain some aspects of the Earth-Moon system. However, it is difficult to reconcile giant-impact models with the compositional similarity of the Earth and Moon without violating angular momentum constraints. Furthermore, successful giant-impact scenarios require very specific conditions such that they have a low probability of occurring. Here we present numerical simulations suggesting that the Moon could instead be the product of a succession of a variety of smaller collisions. In this scenario, each collision forms a debris disk around the proto-Earth that then accretes to form a moonlet. The moonlets tidally advance outward, and may coalesce to form the Moon. We find that sub-lunar moonlets are a common result of impacts expected onto the proto-Earth in the early Solar System and find that the planetary rotation is limited by impact angular momentum drain. We conclude that, assuming efficient merger of moonlets, a multiple-impact scenario can account for the formation of the Earth-Moon system with its present properties.
机译:单一巨大影响的月球起源的假设可以解释地球系统的一些方面。然而,难以使巨大影响模型与地球和月亮的组成相似度进行调和,而不会违反角动量限制。此外,成功的巨大影响情景需要非常具体的条件,使得它们具有很低的发生可能性。在这里,我们提出了数值模拟,表明月球可以是连续各种较小碰撞的产物。在这种情况下,每个碰撞在原始地球周围形成碎屑盘,然后形成成像以形成月光。月光下来向外推进,并且可以结合形成月亮。我们发现子月球月月队是预期的早期太阳系中预期的影响的常见结果,并发现行星旋转受冲击角动量排水的限制。我们得出结论,假设Mounlet的有效合并,多次影响方案可以考虑地球月球系统的形成,其具有目前的属性。

著录项

  • 来源
    《Nature geoscience》 |2017年第2期|共7页
  • 作者单位

    Weizmann Inst Sci Dept Earth &

    Planetary Sci IL-76100 Rehovot Israel;

    Weizmann Inst Sci Dept Earth &

    Planetary Sci IL-76100 Rehovot Israel;

    Technion Israel Inst Technol Dept Phys IL-32000 Haifa Israel;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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