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Impact-driven subduction on the Hadean Earth

机译:哈哈地球上的影响驱动的俯冲

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摘要

Impact cratering was a dominant geologic process in the early Solar System that probably played an active role in the crustal evolution of the young terrestrial planets. The Earth's interior during the Hadean, 4.56 to 4 billion years ago, may have been too hot to sustain plate tectonics. However, whether large impacts could have triggered tectonism on the early Earth remains unclear. Here we conduct global-scale tectonic simulations of the evolution of the Earth through the Hadean eon under variable impact fluxes. Our simulations show that the thermal anomalies produced by large impacts induce mantle upwellings that are capable of driving transient subduction events. Furthermore, we find that moderate-sized impacts can act as subduction triggers by causing localized lithospheric thinning and mantle upwelling, and modulate tectonic activity. In contrast to contemporary subduction, the simulated localized subduction events are relatively short-lived (less than 10Myr) with relatively thin, weak plates. We suggest that resurgence in subduction activity induced by an increased impact flux between 4.1 and 4.0 billion years ago may explain the coincident increase in palaeointensity of the magnetic field. We further suggest that transient impact-driven subduction reconciles evidence from Hadean zircons for tectonic activity with other lines of evidence consistent with an Earth that was largely tectonically stagnant from the Hadean into the Archaean.
机译:冲击陨石坑是早期的太阳能系统中的主要地质过程,可能在年轻的陆地行星的地壳演变中发挥了积极作用。地球的内部在哈维亚,4.56至40亿年前,可能太热了,无法维持板块构造。但是,是否可能对早期地球产生的强烈影响触发构造仍然不清楚。在这里,我们通过可变撞击通量下通过HADEAN EON进行全球范围的构造模拟地球的演变。我们的模拟表明,由大冲击产生的热异常诱导了能够驱动瞬态俯冲事件的地幔升值。此外,我们发现中等大小的影响通过使局部型岩石稀疏和地幔上升和调节构造活动来充当俯冲触发器。与当代俯冲相比,模拟局部俯冲事件具有相对较薄的弱板相对较短的(小于10myr)。我们建议,在4.1和40亿年前增加的冲击通量增加的俯冲活动中的复兴可以解释磁场古董的重合增加。我们进一步建议,暂态的影响驱动的潜水郊区与Hadean Zircons的证据与其他与地球符合的其他证据的构造活动与地球上的地球上符合的地球上,这与哈维亚群岛延伸到亚古海中。

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  • 来源
    《Nature geoscience》 |2017年第10期|共7页
  • 作者单位

    Macquarie Univ Macquarie Planetary Res Ctr Sydney NSW 2109 Australia;

    Southwest Res Inst Boulder CO 80302 USA;

    Macquarie Univ Macquarie Planetary Res Ctr Sydney NSW 2109 Australia;

    Southwest Res Inst Boulder CO 80302 USA;

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  • 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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