地质学
重力异常
火山
撞击坑
大地测量学
构造盆地
地震学
地球物理学
地貌学
天体生物学
古生物学
物理
油田
作者
H. J. Melosh,A. M. Freed,Brandon Johnson,D. M. Blair,J. C. Andrews‐Hanna,G. A. Neumann,R. J. Phillips,David E. Smith,Sean C. Solomon,M. A. Wieczorek,M. T. Zuber
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2013-05-31
卷期号:340 (6140): 1552-1555
被引量:215
标识
DOI:10.1126/science.1235768
摘要
High-resolution gravity data from the Gravity Recovery and Interior Laboratory spacecraft have clarified the origin of lunar mass concentrations (mascons). Free-air gravity anomalies over lunar impact basins display bull's-eye patterns consisting of a central positive (mascon) anomaly, a surrounding negative collar, and a positive outer annulus. We show that this pattern results from impact basin excavation and collapse followed by isostatic adjustment and cooling and contraction of a voluminous melt pool. We used a hydrocode to simulate the impact and a self-consistent finite-element model to simulate the subsequent viscoelastic relaxation and cooling. The primary parameters controlling the modeled gravity signatures of mascon basins are the impactor energy, the lunar thermal gradient at the time of impact, the crustal thickness, and the extent of volcanic fill.
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