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The terrestrial record of Late Heavy Bombardment

机译:后期重型轰炸的地面记录

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Until recently, the known impact record of the early Solar System lay exclusively on the surfaces of the Moon, Mars, and other bodies where it has not been erased by later weathering, erosion, impact gardening, and/or tectonism. Study of the cratered surfaces of these bodies led to the concept of the Late Heavy Bombardment (LHB), an interval from about 4.1 to 3.8 billion years ago (Ga) during which the surfaces of the planets and moons in the inner Solar System were subject to unusually high rates of bombardment followed by a decline to present low impact rates by about 3.5 Ga. Over the past 30 years, however, it has become apparent that there is a terrestrial record of large impacts from at least 3.47 to 3.22 Ga and from 2.63 to 2.49 Ga. The present paper explores the earlier of these impact records, providing details about the nature of the 8 known ejecta layers that constitute the evidence for large terrestrial impacts during the earlier of these intervals, the inferred size of the impactors, and the potential effects of these impacts on crustal development and life. The existence of this record implies that LHB did not end abruptly at 3.8-3.7 Ga but rather that high impact rates, either continuous or as impact clusters, persisted until at least the close of the Archean at 2.5 Ga. It implies that the shift from external, impact-related controls on the long-term development of the surface system on the Earth to more internal, geodynamic controls may have occurred much later in geologic history than has been supposed previously.
机译:直到最近,早期太阳系的已知撞击记录还完全停留在月球,火星和其他物体的表面上,但后来的风化,侵蚀,撞击园艺和/或构造作用并没有将其消除。对这些天体的坑坑洼洼的表面的研究导致了后期重型轰炸(LHB)的概念,该间隔是大约4.1至38亿年前(Ga),在此期间,内部太阳系的行星和卫星表面受到了撞击到轰炸率异常高,然后下降到目前的低撞击率,下降了约3.5 Ga。但是,在过去30年中,很明显,有一个陆地记录显示,撞击的影响范围从至少3.47 Ga至3.22 Ga,从2.63至2.49 Ga。本文件探讨了这些撞击记录中的较早者,提供了有关8个已知喷射层的性质的详细信息,这些喷射层构成了在这些间隔中较早期间发生大地面撞击的证据,推断出的撞击物大小以及这些影响对地壳发育和生命的潜在影响。该记录的存在暗示着LHB不会在3.8-3.7 Ga突然终止,而是持续的高冲击率,无论是连续的还是作为冲击团簇,一直持续到至少太古宙以2.5 Ga闭合。这意味着从对于地球表面系统的长期发展,外部的,与冲击有关的控制可能在地质历史上发生的时间比以前想象的要晚得多,而发生在内部的地球动力学控制上。

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