论文标题

潮汐对系外行星的潜力的影响

Impact of Tides on the Potential for Exoplanets to Host Exomoons

论文作者

Tokadjian, Armen, Piro, Anthony L.

论文摘要

外事物可能在确定太阳系以外的世界的可居住性方面起重要作用。他们可以通过与母星打破潮汐锁定,驱动潮汐加热,甚至是自身的生活来稳定条件,改变气候。但是,系外行星维持外事物的能力取决于复杂的潮汐相互作用。在此激励的情况下,我们利用简化的潮汐滞后模型遵循行星,恒星和月球系统中的分离以及轨道和旋转时期的演变。我们将这些模型应用于已知的系外行星系统,以评估这些系外行星的托管外事物的潜力。我们发现,至少有36个系统,其中宜居区中的系外行星可以容纳一个超过一个gigayear的外事物。这包括开普勒1625b,这是一个带有外部候选者的系外行星,我们确定它能够将海王星大小的月球保留长的时间比哈勃时间更长。这些结果可能有助于为将来的观察提供潜在的目标。在许多情况下,特定系外行星的组成仍然存在很大的不确定性。我们表明,由于其潮汐反应的差异,对外事物的检测(或不)将对行星结构提供重要限制。

Exomoons may play an important role in determining the habitability of worlds outside of our solar system. They can stabilize conditions, alter the climate by breaking tidal locking with the parent star, drive tidal heating, and perhaps even host life themselves. However, the ability of an exoplanet to sustain an exomoon depends on complex tidal interactions. Motivated by this, we make use of simplified tidal lag models to follow the evolution of the separations and orbital and rotational periods in planet, star, and moon systems. We apply these models to known exoplanet systems to assess the potential for these exoplanets to host exomoons. We find that there are at least 36 systems in which an exoplanet in the habitable zone may host an exomoon for longer than one gigayear. This includes Kepler-1625b, an exoplanet with an exomoon candidate, which we determine would be able to retain a Neptune-sized moon for longer than a Hubble time. These results may help provide potential targets for future observation. In many cases, there remains considerable uncertainty in the composition of specific exoplanets. We show the detection (or not) of an exomoon would provide an important constraint on the planet structure due to differences in their tidal response.

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