首页> 外文期刊>Icarus: International Journal of Solar System Studies >Gravity measurements are key in addressing the habitability of a subsurface ocean in Jupiter's Moon Europa
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Gravity measurements are key in addressing the habitability of a subsurface ocean in Jupiter's Moon Europa

机译:重力测量是解决木星月球欧洲欧罗巴地下海洋的居住性的关键

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The habitability of Europa's subsurface ocean increases greatly if there is volcanism occurring at the underlying rock-water interface. The potential for volcanic activity is lowered, however, if Europa's silicate interior only has radiogenic nuclides as a heat source; depths to silicate solidus temperatures would be hundreds of kilometers deep. The addition of tidal heating in the silicate interior increases the chances of volcanism, with its implications for life. Thus, constraining the heat flow from the silicate interior can be used as a proxy for habitability. Here, we show that the structure of the silicate interior's near surface dominates the Bouguer gravity anomalies (measured surface gravity minus the gravity resulting from the ice surface) for global to regional horizontal scales greater than similar to 200 km. We next use the finite element method to predict the compensation state of topography on the silicate interior, derived from the Moon and assuming the likely possibility of a basaltic crust over a peridotitic mantle. These compensation models are tied to the heat flow from the silicate interior. We then calculate the gravity coming from the silicate interior as a function of heat flow, finding that the magnitude of the anomalies can discriminate heat flow regimes. Gravity anomalies only exceed similar to 250 mGal for the case of solely radiogenic heating. We then discuss the implications for future missions to Europa, including the discrete gravity sampling of the proposed Europa Clipper mission, and conclude that gravity and topography measurements should be given very high priority in mission planning.
机译:如果在潜在的岩石水界面发生火山,欧罗巴地下海洋的居住性会增加。然而,如果欧洲的硅酸盐内部具有作为热源的辐射核苷酸,则火山活性的可能性降低;深度硅酸盐固体温度将是数百公里深。在硅酸盐内部添加潮热增加了火山的机会,其对生命的影响。因此,限制来自硅酸盐内部的热流可以用作适合性的代理。在这里,我们表明硅酸盐内部的近近表面的结构主导了Bouguer重力异常(测得的表面重力减去由冰面产生的重力),以全局到区域水平尺度大于200公里。我们接下来使用有限元方法来预测硅酸盐内部的地形的补偿状态,衍生自月球,并假设玄武岩地壳在橄榄石地幔上的可能性。这些补偿模型与硅酸盐内部的热流捆绑在一起。然后,我们计算来自硅酸盐内部的重力作为热流的函数,发现异常的大小可以区分热流制度。重力异常仅超过250mgal,对于单独放射加热的情况。然后,我们讨论对未来任务到Europa的影响,包括所提出的Europa Clipper任务的离散重力采样,并得出重力和地形测量应在任务规划中非常高。

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