Exoplanets Torqued by the Combined Tides of a Moon and Parent Star
arXiv:1803.01971 · doi:10.3847/1538-3881/aaca38
Abstract
In recent years, there has been interest in Earth-like exoplanets in the habitable zones of low mass stars (). Furthermore, it has been argued that a large moon may be important for stabilizing conditions on a planet for life. If these two features are combined, then an exoplanet can feel a similar tidal influence from both its moon and parent star, leading to potentially interesting dynamics. The moon's orbital evolution depends on the exoplanet's initial spin period . When is small, transfer of the exoplanet's angular momentum to the moon's orbit can cause the moon to migrate outward sufficiently to be stripped by the star. When is large, the moon migrates less and the star's tidal torques spin down the exoplanet. Tidal interactions then cause the moon to migrate inward until it is likely tidally disrupted by the exoplanet and potentially produces rings. While one may think that these findings preclude the presence of moons for the exoplanets of low mass stars, in fact a wide range of timescales are found for the loss or destruction of the moon; it can take depending on the system parameters. When the moon is still present, the combined tidal torques force the exoplanet to spin asynchronously with respect to both its moon and parent star, which tidally heats the exoplanet. This can produce heat fluxes comparable to those currently coming through the Earth, arguing that combined tides may be a method for driving tectonic activity in exoplanets.
10 pages, 9 figures, updated with minor changes to match version accepted for publication in AJ
References in corpus (7)
- Tidal dissipation in stars and giant planets
- A stellar-mass-dependent drop in planet occurrence rates
- Whole planet coupling between climate, mantle, and core: Implications for the evolution of rocky planets
- Predicting Photometric and Spectroscopic Signatures of Rings around Transiting Extrasolar Planets
- A novel method for identifying exoplanetary rings
- On the Spin-axis Dynamics of a Moonless Earth
- The Stability of Tidal Equilibrium for Hierarchical Star-Planet-Moon Systems
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- Can Moons Have Moons?
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- Stability and detectability of exomoons orbiting HIP 41378 f, a temperate Jovian planet with an anomalously low apparent density
- Photosynthesis on Exoplanets and Exomoons from Reflected Light
- Exomoons in Systems with a Strong Perturber: Applications to Cen AB
- Consequences of dynamically unstable moons in extrasolar systems
- Tidal Heating of Exomoons in Resonance and Implications for Detection
- Probing Planets with Exomoons: The Cases of Kepler-1708 b and Kepler-1625 b
- Can Rocky Exoplanets with Rings Pose as Sub-Neptunes?
- Updated Studies on Exomoons in the HD 23079 System
- Moon-packing around an Earth-mass Planet