Inferring heat recirculation and albedo for exoplanetary atmospheres: Comparing optical phase curves and secondary eclipse data
arXiv:1512.04908 · doi:10.1051/0004-6361/201526297
Abstract
Basic atmospheric properties such as albedo and heat redistribution between day and nightside have been inferred for a number of planets using observations of secondary eclipses and thermal phase curves. Optical phase curves have not yet been used to constrain these atmospheric properties consistently. We re-model previously published phase curves of CoRoT-1b, TrES-2b and HAT-P-7b and infer albedos and recirculation efficiencies. These are then compared to previous estimates based on secondary eclipse data. We use a physically consistent model to construct optical phase curves. This model takes Lambertian reflection, thermal emission, ellipsoidal variations and Doppler boosting into account. CoRoT-1b shows a non-negligible scattering albedo (0.11<AS<0.3 at 95% confidence) as well as small day-night temperature contrasts, indicative of moderate to high re-distribution of energy between dayside and nightside. These values are contrary to previous secondary eclipse and phase curve analyses. In the case of HAT-P-7b, model results suggest relatively high scattering albedo (AS=0.3). This confirms previous phase curve analysis, however, it is in slight contradiction to values inferred from secondary eclipse data. For TrES-2b, both approaches yield very similar estimates of albedo and heat recirculation. Discrepancies between recirculation and albedo values as inferred from secondary eclipse and optical phase curve analyses might be interpreted as a hint that optical and IR observations probe different atmospheric layers, and hence temperatures.
accepted for publication in Astronomy & Astrophysics on Dec 14th, main manuscript: 16 pages, 20 figures, 2 tables. Contains 5 Appendices
References in corpus (16)
- Rayleigh scattering in the transit spectrum of HD 189733b
- Thermal structure of an exoplanet atmosphere from phase-resolved emission spectroscopy
- Multi-Wavelength Constraints on the Day-Night Circulation Patterns of HD 189733b
- Transiting exoplanets from the CoRoT space mission I - CoRoT-Exo-1b: a low-density short-period planet around a G0V star
- HAT-P-7b: An Extremely Hot Massive Planet Transiting a Bright Star in the Kepler Field
- The Very Low Albedo of an Extrasolar Planet: MOST Spacebased Photometry of HD 209458
- Changing Phases of Alien Worlds: Probing Atmospheres of Kepler Planets with High-Precision Photometry
- TrES-2: The First Transiting Planet in the Kepler Field
- Atmospheric Dynamics of Hot Exoplanets
- Pseudo 2D chemical model of hot Jupiter atmospheres: application to HD 209458b and HD 189733b
- Balancing the Energy Budget of Short-Period Giant Planets: Evidence for Reflective Clouds and Optical Absorbers
- TiO and VO broad band absorption features in the optical spectrum of the atmosphere of the hot-Jupiter HD209458b
- A New 24 micron Phase Curve for upsilon Andromedae b
- A Semi-Analytical Model of Visible-Wavelength Phase Curves of Exoplanets and Applications to Kepler-7 b and Kepler-10 b
- BEER analysis of Kepler and CoRoT light curves: II. Evidence for superrotation in the phase curves of three Kepler hot Jupiters
- Glory revealed in disk-integrated photometry of Venus
Cited by in corpus (14)
- A population study of gaseous exoplanets
- 3.6 and 4.5 m Phase Curves of the Highly-Irradiated Hot Jupiters WASP-19b and HAT-P-7b
- Variability in the Atmosphere of the Hot Giant Planet HAT-P-7 b
- The astrophysics of visible-light orbital phase curves in the space age
- The Equilibrium Temperature of Planets in Elliptical Orbits
- The TRAPPIST-1 Habitable Atmosphere Intercomparison (THAI). Part III: Simulated Observables -- The return of the spectrum
- A New Model Suite to Determine the Influence of Cosmic Rays on (Exo)planetary Atmospheric Biosignatures -- Validation based on Modern Earth
- The test case of HD26965: difficulties disentangling weak Doppler signals from stellar activity
- Science Extraction from TESS Observations of Known Exoplanet Hosts
- Spatially Resolved Modeling of Optical Albedos for a Sample of Six Hot Jupiters
- Inferring asymmetric limb cloudiness on exoplanets from transit light curves
- Atmospheric Characterization via Broadband Color Filters on the PLAnetary Transits and Oscillations of stars (PLATO) Mission
- Reassessing Exoplanet Light Curves with a Thermal Model
- 3D Global climate model of an exo-Venus: a modern Venus-like atmosphere for the nearby super-Earth LP 890-9 c