Discovery and Atmospheric Characterization of Giant Planet Kepler-12b: An Inflated Radius Outlier
arXiv:1109.1611 · doi:10.1088/0067-0049/197/1/9
Abstract
We report the discovery of planet Kepler-12b (KOI-20), which at 1.695\pm0.030 RJ is among the handful of planets with super-inflated radii above 1.65 RJ. Orbiting its slightly evolved G0 host with a 4.438-day period, this 0.431\pm0.041 MJ planet is the least-irradiated within this largest-planet-radius group, which has important implications for planetary physics. The planet's inflated radius and low mass lead to a very low density of 0.111\pm0.010 g cm-3. We detect the occultation of the planet at a significance of 3.7σ in the Kepler bandpass. This yields a geometric albedo of 0.14\pm0.04; the planetary flux is due to a combination of scattered light and emitted thermal flux. We use multiple observations with Warm Spitzer to detect the occultation at 7σ and 4σ in the 3.6 and 4.5 μm bandpasses, respectively. The occultation photometry timing is consistent with a circular orbit, at e < 0.01 (1σ), and e < 0.09 (3σ). The occultation detections across the three bands favor an atmospheric model with no dayside temperature inversion. The Kepler occultation detection provides significant leverage, but conclusions regarding temperature structure are preliminary, given our ignorance of opacity sources at optical wavelengths in hot Jupiter atmospheres. If Kepler-12b and HD 209458b, which intercept similar incident stellar fluxes, have the same heavy element masses, the interior energy source needed to explain the large radius of Kepler-12b is three times larger than that of HD 209458b. This may suggest that more than one radius-inflation mechanism is at work for Kepler-12b, or that it is less heavy-element rich than other transiting planets.
Revised for ApJ
References in corpus (19)
- The Evolution of L and T Dwarfs in Color-Magnitude Diagrams
- Detection of Thermal Emission from an Extrasolar Planet
- The effect of red noise on planetary transit detection
- Line and Mean Opacities for Ultracool Dwarfs and Extrasolar Planets
- Models of the in situ formation of detected extrasolar giant planets
- The Transit Light Curve Project. IX. Evidence for a Smaller Radius of the Exoplanet XO-3b
- Inflating Hot Jupiters With Ohmic Dissipation
- Multi-Wavelength Constraints on the Day-Night Circulation Patterns of HD 189733b
- Modeling Kepler transit light curves as false positives: Rejection of blend scenarios for Kepler-9, and validation of Kepler-9d, a super-Earth-size planet in a multiple system
- The Transit Light Curve (TLC) Project. I. Four Consecutive Transits of the Exoplanet XO-1b
- Heat transport in giant (exo)planets: a new perspective
- Tidal Heating of Extra-Solar Planets
- Effects of Orbital Eccentricity on Extrasolar Planet Transit Detection and Lightcurves
- Inflating and Deflating Hot Jupiters: Coupled Tidal and Thermal Evolution of Known Transiting Planets
- TrES-4: A Transiting Hot Jupiter of Very Low Density
- Optical Albedo Theory of Strongly-Irradiated Giant Planets: The Case of HD 209458b
- Coupled Evolution with Tides of the Radius and Orbit of Transiting Giant Planets: General Results
- Analysis of Spitzer Spectra of Irradiated Planets: Evidence for Water Vapor?
- An analysis of the CoRoT-2 system: A young spotted star and its inflated giant planet
Cited by in corpus (57)
- Revised Stellar Properties of Kepler Targets for the Quarter 1-16 Transit Detection Run
- The Mass of KOI-94d and a Relation for Planet Radius, Mass, and Incident Flux
- Revised Stellar Properties of Kepler Targets for the Q1-17 (DR25) Transit Detection Run
- SOPHIE velocimetry of Kepler transit candidates XVII. The physical properties of giant exoplanets within 400 days of period
- Limb darkening and exoplanets: testing stellar model atmospheres and identifying biases in transit parameters
- The Kepler Follow-Up Observation Program. I. A Catalog of Companions to Kepler Stars from High-Resolution Imaging
- Changing Phases of Alien Worlds: Probing Atmospheres of Kepler Planets with High-Precision Photometry
- The Gaia-Kepler Stellar Properties Catalog. II. Planet Radius Demographics as a Function of Stellar Mass and Age
- SOPHIE velocimetry of Kepler transit candidates VII. A false-positive rate of 35% for Kepler close-in giant exoplanet candidates
- Homogeneous studies of transiting extrasolar planets. V. New results for 38 planets
- Understanding Trends Associated with Clouds in Irradiated Exoplanets
- A comprehensive study of Kepler phase curves and secondary eclipses -- temperatures and albedos of confirmed Kepler giant planets
- The Effects of Irradiation on Hot Jovian Atmospheres: Heat Redistribution and Energy Dissipation
- WASP-42 b and WASP-49 b: two new transiting sub-Jupiters
- HAT-P-39b--HAT-P-41b: Three Highly Inflated Transiting Hot Jupiters
- Atmospheric Characterization of the Hot Jupiter Kepler-13Ab
- A library of ATMO forward model transmission spectra for hot Jupiter exoplanets
- Disk evolution, element abundances and cloud properties of young gas giant planets
- KOI-152's Low Density Planets
- Photometrically derived masses and radii of the planet and star in the TrES-2 system
- Features in the Broadband Eclipse Spectra of Exoplanets: Signal or Noise?
- Studying atmosphere-dominated hot Jupiter Kepler phase curves: Evidence that inhomogeneous atmospheric reflection is common
- The Ĝ Search for Extraterrestrial Civilizations with Large Energy Supplies. IV. The Signatures and Information Content of Transiting Megastructures
- Evidence for a spectroscopic direct detection of reflected light from 51 Peg b
- Low False-Positive Rate of Kepler Candidates Estimated From A Combination Of Spitzer And Follow-Up Observations
- ExoClock Project III: 450 new exoplanet ephemerides from ground and space observations
- WASP-78b and WASP-79b: Two highly-bloated hot Jupiter-mass exoplanets orbiting F-type stars in Eridanus
- The Structure of Exoplanets
- A transition between the hot and the ultra-hot Jupiter atmospheres
- Systematic Phase Curve Study of Known Transiting Systems from Year 1 of the TESS Mission
- A Uniform Search for Secondary Eclipses of Hot Jupiters in Kepler Q2 Lightcurves
- High-precision photometry by telescope defocussing. IV. Confirmation of the huge radius of WASP-17b
- Secondary eclipse observations for seven hot-Jupiters from the Anglo-Australian Telescope
- Confirmation of Hot Jupiter Kepler-41b via Phase Curve Analysis
- ExoClock project II: A large-scale integrated study with 180 updated exoplanet ephemerides
- KELT-11b: A Highly Inflated Sub-Saturn Exoplanet Transiting the V=8 Subgiant HD 93396
- SOPHIE velocimetry of Kepler transit candidates XI. Kepler-412 system: probing the properties of a new inflated hot Jupiter
- The Galilean Satellites Formed Slowly from Pebbles
- Evidence for disequilibrium chemistry from vertical mixing in hot Jupiter atmospheres. A comprehensive survey of transiting close-in gas giant exoplanets with warm-Spitzer/IRAC
- The Dawes Review 3: The Atmospheres of Extrasolar Planets and Brown Dwarfs
- A Transiting Jupiter Analog
- Obliquity Tides May Drive WASP-12b's Rapid Orbital Decay
- Tidally Distorted Exoplanets: Density Corrections for Short-Period Hot-Jupiters based solely on Observable Parameters
- Spatially Resolved Modeling of Optical Albedos for a Sample of Six Hot Jupiters
- 100-year DASCH Light Curves of Kepler Planet-Candidate Host Stars
- Average Albedos of Close-in Super-Earths and Neptunes from Statistical Analysis of Long Cadence Kepler Secondary Eclipse Data
- Characterization of Exoplanets: Secondary Eclipses
- The GAPS Programme with HARPS-N@TNG VI: The Curious Case of TrES-4b
- Kepler's Dark Worlds: a Low Albedo for an Ensemble of Neptunian and Terran Exoplanets
- Gravity-Darkened Seasons: Insolation Around Rapid Rotators
- Measuring Tidal Dissipation in Giant Planets from Tidal Circularization
- ExELS: an exoplanet legacy science proposal for the ESA Euclid mission. II. Hot exoplanets and sub-stellar systems
- Trends in Spitzer Secondary Eclipses
- AutoRegressive Planet Search: Feasibility Study for Irregular Time Series
- A Comprehensive Analysis of the Panchromatic Transmission Spectrum of the Hot-Saturn WASP-96 b: Nondetection of Haze, Possible Sodium Limb Asymmetry, Stellar Characterization, and Formation History
- The Effect of Atmospheric Chemistry on the Optical Geometric Albedos of Hot Jupiters
- Optimization Applied to Selected Exoplanets