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Geological evidence for solid-state convection in Europa's ice shell.

机译:欧罗巴冰壳中固态对流的地质证据。

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The ice-rich surface of the jovian satellite Europa is sparsely cratered, suggesting that this moon might be geologically active today. Moreover, models of the satellite's interior indicate that tidal interactions with Jupiter might produce enough heat to maintain a subsurface liquid water layer. But the mechanisms of interior heat loss and resurfacing are currently unclear, as is the question of whether Europa has (or had at one time) a liquid water ocean. Here we report on the morphology and geological interpretation of distinct surface features-pits, domes and spots-discovered in high-resolution images of Europa obtained by the Galileo spacecraft. The features are interpreted as the surface manifestation of diapirs, relatively warm localized ice masses that have risen buoyantly through the subsurface. We find that the formation of the features can be explained by thermally induced solid-state convection within an ice shell, possibly overlying a liquid water layer. Our results are consistent with the possibility that Europa has a liquid water ocean beneath a surface layer of ice, but further tests and observations are needed to demonstrate this conclusively.
机译:木星卫星欧罗巴的冰层稀疏,坑坑洼洼,表明该月球今天可能在地质上活跃。此外,卫星内部模型表明,与木星的潮汐相互作用可能产生足够的热量,以维持地下液态水层。但是,目前尚不清楚内部热量散失和表面重铺的机制,以及欧罗巴是否拥有(或曾经拥有)液态海洋的问题。在这里,我们报道了伽利略号航天器获得的高分辨率欧罗巴图像中发现的独特表面特征(坑,穹顶和斑点)的形态和地质解释。这些特征被解释为是底盘的表面表现,底盘是相对温暖的局部冰团,已经通过地下浮起。我们发现,特征的形成可以通过冰壳内可能覆盖液态水层的热诱导固态对流来解释。我们的结果与欧罗巴在冰表层下有液态水海洋的可能性是一致的,但是需要进一步的测试和观察来最终证明这一点。

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