论文标题

共鸣中的外事物的潮汐加热及其对检测的影响

Tidal Heating of Exomoons in Resonance and Implications for Detection

论文作者

Tokadjian, Armen, Piro, Anthony L.

论文摘要

外部活动的存在可能会受到外事物的存在的强烈影响,在某些情况下,外事物本身可能是生命发展的可能位置。对于宜居区以外的卫星,大量的潮汐加热可能会增加其表面温度,以至于被认为是可居住的。月球的潮汐加热取决于许多因素,例如偏心率,半轴轴,父行星的大小以及其他月亮的存在。在这项工作中,我们探讨了使用半分析和数值模型的组合在共振中进行多月系统的潮汐加热程度。这表明,即使对于具有零初始偏心的月球,当它与外月亮共振时,它也会产生明显的偏心率和相关的潮汐加热。根据两卫的质量比率,这种共振可以是短暂的($ \ leq200 $ MYR),也可以继续受到卫星的潮汐迁移而驱动。这种潮汐加热也可以帮助使外事物更容易发现,我们探索了两种情况:二次日食和火山物种的排气。然后,我们考虑假设的卫星绕着已知的行星系统,以识别适合使用这些方法寻找外来的野兽。最后,我们讨论了当前和未来的仪器和任务,以更好地了解以这些方式进行外观发现将是多么实用。

The habitability of exoplanets can be strongly influenced by the presence of an exomoon, and in some cases the exomoon itself could be a possible place for life to develop. For moons outside of the habitable zone, significant tidal heating may raise their surface temperature enough to be considered habitable. Tidal heating of a moon depends on numerous factors such as eccentricity, semimajor axis, size of parent planet, and presence of additional moons. In this work, we explore the degree of tidal heating possible for multi-moon systems in resonance using a combination of semi-analytic and numerical models. This demonstrates that even for a moon with zero initial eccentricity, when it moves into resonance with an outer moon, it can generate significant eccentricity and associated tidal heating. Depending on the mass ratio of the two moons, this resonance can either be short-lived ($\leq200$ Myr) or continue to be driven by the tidal migration of the moons. This tidal heating can also assist in making the exomoons easier to discover, and we explore two scenarios: secondary eclipses and outgassing of volcanic species. We then consider hypothetical moons orbiting known planetary systems to identify which will be beast suited for finding exomoons with these methods. We conclude with a discussion of current and future instrumentation and missions to better understand how practical it will be to make exomoon discoveries in these ways.

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