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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Enceladus's measured physical libration requires a global subsurface ocean
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Enceladus's measured physical libration requires a global subsurface ocean

机译:土卫二的实际身体解放需要全球地下海洋

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Several planetary satellites apparently have subsurface seas that are of great interest for, among other reasons, their possible habitability. The geologically diverse saturnian satellite Enceladus vigorously vents liquid water and vapor from fractures within a south polar depression and thus must have a liquid reservoir or active melting. However, the extent and location of any subsurface liquid region is not directly observable. We use measurements of control points across the surface of Enceladus accumulated over seven years of spacecraft observations to determine the satellite's precise rotation state, finding a forced physical libration of 0.120 +/- 0.014 degrees (2 sigma). This value is too large to be consistent with Enceladus's core being rigidly connected to its surface, and thus implies the presence of a global ocean rather than a localized polar sea. The maintenance of a global ocean within Enceladus is problematic according to many thermal models and so may constrain satellite properties or require a surprisingly dissipative Saturn. (C) 2015 Elsevier Inc. All rights reserved.
机译:显然,几颗行星状卫星的地下海很受人们关注,其原因之一是其可能的可居住性。土星卫星的地质分布各不相同,它们从南极凹陷内的裂缝中大力排出液态水和蒸气,因此必须具有液态储层或活跃的熔融作用。但是,不能直接观察到任何地下液体区域的范围和位置。我们使用在七年的航天器观测中积累的整个土卫二表面控制点的测量结果,来确定卫星的精确旋转状态,得出的强迫物理解放度为0.120 +/- 0.014度(2西格玛)。该值太大,无法与土卫二的核心牢固地连接到其表面相一致,因此暗示存在全球性海洋而不是局部极地海。根据许多热模型,在土卫二中维持全球海洋是有问题的,因此可能会限制卫星特性或需要令人惊讶地耗散性的土星。 (C)2015 Elsevier Inc.保留所有权利。

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