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巨大的盆地形成撞击会导致火星发电机停止运转吗?

Could giant basin-forming impacts have killed Martian dynamo?

作者信息

Kuang W, Jiang W, Roberts J, Frey H V

机构信息

Planetary Geodynamics Laboratory, NASA Goddard Space Flight Center Greenbelt, Maryland, USA.

Science Systems and Applications, Inc. Lanham, Maryland, USA.

出版信息

Geophys Res Lett. 2014 Nov 28;41(22):8006-8012. doi: 10.1002/2014GL061818. Epub 2014 Nov 22.

Abstract

The observed strong remanent crustal magnetization at the surface of Mars suggests an active dynamo in the past and ceased to exist around early to middle Noachian era, estimated by examining remagnetization strengths in extant and buried impact basins. We investigate whether the Martian dynamo could have been killed by these large basin-forming impacts, via numerical simulation of subcritical dynamos with impact-induced thermal heterogeneity across the core-mantle boundary. We find that subcritical dynamos are prone to the impacts centered on locations within 30° of the equator but can easily survive those at higher latitudes. Our results further suggest that magnetic timing places a strong constraint on postimpact polar reorientation, e.g., a minimum 16° polar reorientation is needed if Utopia is the dynamo killer.

摘要

在火星表面观测到的强烈剩余地壳磁化表明,过去存在活跃的发电机,通过研究现存和埋藏撞击盆地中的再磁化强度估计,该发电机在诺亚纪早期至中期左右停止存在。我们通过对跨核幔边界具有撞击诱导热不均匀性的亚临界发电机进行数值模拟,研究火星发电机是否可能被这些形成大型盆地的撞击所摧毁。我们发现亚临界发电机容易受到赤道30°范围内位置的撞击影响,但能够轻松抵御高纬度地区的撞击。我们的结果进一步表明,磁定时对撞击后极地重新定向有很强的限制,例如,如果乌托邦是发电机杀手,则需要至少16°的极地重新定向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62c9/4459199/ccbeff71ea99/grl0041-8006-f1.jpg

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