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“木卫一计划”的重新定位表明冥王星的地下海洋。

Reorientation of Sputnik Planitia implies a subsurface ocean on Pluto.

机构信息

Department of Earth and Planetary Sciences, University of California Santa Cruz, Santa Cruz, California 95064, USA.

Department of Astronomy, University of Maryland, College Park, Maryland 20742, USA.

出版信息

Nature. 2016 Dec 1;540(7631):94-96. doi: 10.1038/nature20148. Epub 2016 Nov 16.

Abstract

The deep nitrogen-covered basin on Pluto, informally named Sputnik Planitia, is located very close to the longitude of Pluto's tidal axis and may be an impact feature, by analogy with other large basins in the Solar System. Reorientation of Sputnik Planitia arising from tidal and rotational torques can explain the basin's present-day location, but requires the feature to be a positive gravity anomaly, despite its negative topography. Here we argue that if Sputnik Planitia did indeed form as a result of an impact and if Pluto possesses a subsurface ocean, the required positive gravity anomaly would naturally result because of shell thinning and ocean uplift, followed by later modest nitrogen deposition. Without a subsurface ocean, a positive gravity anomaly requires an implausibly thick nitrogen layer (exceeding 40 kilometres). To prolong the lifetime of such a subsurface ocean to the present day and to maintain ocean uplift, a rigid, conductive water-ice shell is required. Because nitrogen deposition is latitude-dependent, nitrogen loading and reorientation may have exhibited complex feedbacks.

摘要

冥王星上覆盖着深厚氮气的凹陷盆地,非正式地命名为“斯普特尼克平原”,它非常靠近冥王星潮汐轴的经度,可能是一个撞击特征,这可以通过与太阳系中其他大型盆地进行类比得出。斯普特尼克平原因潮汐和旋转扭矩而发生的重新定向可以解释该盆地目前的位置,但需要该特征是一个正重力异常,尽管其地形为负。在这里,我们认为,如果斯普特尼克平原确实是由于撞击而形成的,并且冥王星拥有一个地下海洋,那么由于外壳变薄和海洋隆起,随后是适度的氮气沉积,就会自然产生所需的正重力异常。如果没有地下海洋,则需要一个不合理厚的氮气层(超过 40 公里)才能产生正重力异常。为了将这种地下海洋的寿命延长到今天,并维持海洋隆起,需要一个刚性的、导电的水冰壳。由于氮气沉积是纬度依赖的,因此氮气加载和重新定向可能表现出复杂的反馈。

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