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木卫二冰壳中类似俯冲的过程由偏心率增强期触发。

Subduction-like process in Europa's ice shell triggered by enhanced eccentricity periods.

作者信息

Kihoulou Martin, Choblet Gaël, Tobie Gabriel, Kalousová Klára, Čadek Ondřej

机构信息

Nantes Université, Univ Angers, Le Mans Université, CNRS, Laboratoire de Planétologie et Géosciences, LPG UMR 6112, 44000 Nantes, France.

Department of Geophysics, Charles University, Faculty of Mathematics and Physics, V Holešovičkách 2, Praha 8, 180 00, Czech Republic.

出版信息

Sci Adv. 2025 Jun 6;11(23):eadq8719. doi: 10.1126/sciadv.adq8719. Epub 2025 Jun 4.

Abstract

Jupiter's icy moon Europa has a liquid water ocean beneath the ice shell and a geologically young surface, both related to extensive tidal processes. Interlaced by tectonic faults, the surface records convergent motions that induced crustal disappearance in some areas. Subduction has been advocated as an explanation; however, its driving mechanism still remains unexplained. We perform numerical simulations to test under what conditions may lateral compression initiate subduction in Europa's ice shell. We demonstrate that subduction-like recycling can occur only for shells of thickness [Formula: see text]10 kilometers, transporting the surface ice into the subsurface ocean. We further show that compression large enough to initiate subduction-like behavior in a thin shell is achieved during brief periods of enhanced eccentricity, implying increased hydrothermal activity at the seafloor. Together with the subduction-like transport of surface oxidants, such conjunction should favor chemical disequilibria in the ocean, increasing its astrobiological potential.

摘要

木星的冰卫星木卫二在冰壳之下有一个液态水海洋,其表面地质年代较新,这两者都与广泛的潮汐过程有关。表面由构造断层交错,记录了在某些区域导致地壳消失的汇聚运动。俯冲作用被认为是一种解释;然而,其驱动机制仍未得到解释。我们进行了数值模拟,以测试在何种条件下横向压缩可能会在木卫二的冰壳中引发俯冲作用。我们证明,类似俯冲的循环仅在厚度[公式:见正文]10千米的冰壳中才会发生,将表面的冰输送到地下海洋中。我们进一步表明,在偏心率增强的短暂时期内,会产生足够大的压缩以在薄冰壳中引发类似俯冲的行为,这意味着海底的热液活动增加。与表面氧化剂的类似俯冲输送一起,这种情况应该有利于海洋中的化学不平衡,增加其天体生物学潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/679c/12136034/7b9e37c86935/sciadv.adq8719-f1.jpg

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