Massive Satellites of Close-In Gas Giant Exoplanets
arXiv:0909.0770 · doi:10.1088/0004-637X/704/2/1341
Abstract
We study the orbits, tidal heating and mass loss from satellites around close-in gas giant exoplanets. The focus is on large satellites which are potentially observable by their transit signature. We argue that even Earth-size satellites around hot Jupiters may be immune to destruction by orbital decay; detection of such a massive satellite would strongly constrain theories of tidal dissipation in gas giants, in a manner complementary to orbital circularization. The star's gravity induces significant periodic eccentricity in the satellite's orbit. The resulting tidal heating rates, per unit mass, are far in excess of Io's and dominate radioactive heating out to planet orbital periods of months for reasonable satellite tidal . Inside planet orbital periods of about a week, tidal heating can completely melt the satellite. Lastly, we compute an upper limit to the satellite mass loss rate due to thermal evaporation from the surface, valid if the satellite's atmosphere is thin and vapor pressure is negligible. Using this upper limit, we find that although rocky satellites around hot Jupiters with orbital periods less than a few days can be significantly evaporated in their lifetimes, detectable satellites suffer negligible mass loss at longer orbital periods.
Accepted to ApJ
References in corpus (6)
- Sodium Absorption From the Exoplanetary Atmosphere of HD189733b Detected in the Optical Transmission Spectrum
- Transit timing effects due to an exomoon
- Hubble Space Telescope times-series photometry of the planetary transit of HD189733: no moon, no rings, starspots
- Transit timing effects due to an exomoon II
- Determination of the size, mass, and density of "exomoons" from photometric transit timing variations
- The potential for tidally heated icy and temperate moons around exoplanets
Cited by in corpus (31)
- The Hunt for Exomoons with Kepler (HEK): I. Description of a New Observational Project
- Exomoon habitability constrained by illumination and tidal heating
- Formation, Habitability, and Detection of Extrasolar Moons
- Superhabitable Worlds
- On the Direct Imaging of Tidally Heated Exomoons
- Exomoon habitability constrained by energy flux and orbital stability
- Characterizing Habitable Exo-Moons
- Outcomes and Duration of Tidal Evolution in a Star-Planet-Moon System
- On the detection of Exomoons: A search in Kepler data for the orbital sampling effect and the scatter peak
- Sodium and Potassium Signatures of Volcanic Satellites Orbiting Close-in Gas Giant Exoplanets
- Runaway greenhouse effect on exomoons due to irradiation from hot, young giant planets
- The fate of moons of close-in giant exoplanets
- The effect of planet-planet scattering on the survival of exomoons
- Lava Worlds: From Early Earth to Exoplanets
- Alkaline Exospheres of Exoplanet Systems: Evaporative Transmission Spectra
- CHEOPS performance for exomoons: The detectability of exomoons by using optimal decision algorithm
- Conditions for water ice lines and Mars-mass exomoons around accreting super-Jovian planets at 1 - 20 AU from Sun-like stars
- Limits on the Orbits and Masses of Moons around Currently-Known Transiting Exoplanets
- Exomoon Habitability and Tidal Evolution in Low-Mass Star Systems
- Origin and Stability of Exomoon Atmospheres - Implications for Habitability
- Radio-Loud Exoplanet-Exomoon Survey (RLEES): GMRT Search for Electron Cyclotron Maser Emission
- Can close-in giant exoplanets preserve detectable moons?
- Exploring formation scenarios for the exomoon candidate Kepler 1625b I
- Transits of extrasolar moons around luminous giant planets
- uGMRT observations of the hot-Saturn WASP 69b: Radio-Loud Exoplanet-Exomoon Survey II (RLEES II)
- Exploring exomoon atmospheres with an idealized general circulation model
- Dust Accretion onto Exoplanets
- Survival of satellites during the migration of a Hot Jupiter
- Global Instability of Exo-Moon System Triggered by Photo-Evaporation
- Astrophysical Simulations and Data Analyses on the Formation, Detection, and Habitability of Moons Around Extrasolar Planets
- Special cases : moons, rings, comets, trojans