Precise Radius Estimates for the Exoplanets WASP-1b and WASP-2b
arXiv:astro-ph/0610589 · doi:10.1086/512008
Abstract
We present precise z-band photometric time series spanning times of transit of the two exoplanets recently discovered by the SuperWASP collaboration. We find planetary radii of 1.44 +/- 0.08 R_J and 1.04 +/- 0.06 R_J for WASP-1b and WASP-2b, respectively. These error estimates include both random errors in the photometry and also the uncertainty in the stellar masses. Our results are 5 times more precise than the values derived from the discovery data alone. Our measurement of the radius of WASP-2b agrees with previously published models of hot Jupiters that include both a 20-M_Earth core of solid material and the effects of stellar insolation. In contrast, we find that the models cannot account for the large size of WASP-1b, even if the planet has no core. Thus, we add WASP-1b to the growing list of hot Jupiters that are larger than expected. This suggests that ``inflated'' hot Jupiters are more common than previously thought, and that any purported explanations involving highly unusual circumstances are disfavored.
15 pages, 2 figures, submitted to ApJ
References in corpus (12)
- TrES-1: The Transiting Planet of a Bright K0V Star
- WASP-1b and WASP-2b: Two new transiting exoplanets detected with SuperWASP and SOPHIE
- HAT-P-1b: A Large-Radius, Low-Density Exoplanet Transiting one Member of a Stellar Binary
- Using Stellar Limb-Darkening to Refine the Properties of HD 209458b
- The Transit Light Curve (TLC) Project. I. Four Consecutive Transits of the Exoplanet XO-1b
- TrES-2: The First Transiting Planet in the Kepler Field
- An Upper Limit on the Albedo of HD 209458b: Direct Imaging Photometry with the MOST Satellite
- A Transiting Planet of a Sun-like Star
- Thermal Structure and Radius Evolution of Irradiated Gas Giant Planets
- The Transit Light Curve (TLC) Project. II. Two Transits of the Exoplanet OGLE-TR-111b
- Refined parameters of the planet orbiting HD 189733
- Transit Photometry of the Core-Dominated Planet HD 149026b
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- Planetary Radii across Five Orders of Magnitude in Mass and Stellar Insolation: Application to Transits
- A Unified Theory for the Atmospheres of the Hot and Very Hot Jupiters: Two Classes of Irradiated Atmospheres
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- The 3.6-8.0 Micron Broadband Emission Spectrum of HD 209458b: Evidence for an Atmospheric Temperature Inversion
- Spin-orbit angle measurements for six southern transiting planets; New insights into the dynamical origins of hot Jupiters
- Possible Solutions to the Radius Anomalies of Transiting Giant Planets
- Homogeneous studies of transiting extrasolar planets. I. Light curve analyses
- Efficient identification of exoplanetary transit candidates from SuperWASP light curves
- Improving Stellar and Planetary Parameters of Transiting Planet Systems: The Case of TrES-2
- The Transit Light Curve Project. IX. Evidence for a Smaller Radius of the Exoplanet XO-3b
- The Mass of KOI-94d and a Relation for Planet Radius, Mass, and Incident Flux
- Theoretical Spectra and Light Curves of Close-in Extrasolar Giant Planets and Comparison with Data
- Tidal Heating of Extra-Solar Planets
- XO-2b: Transiting Hot Jupiter in a Metal-rich Common Proper Motion Binary
- Binarity of Transit Host Stars - Implications on Planetary Parameters
- Homogeneous studies of transiting extrasolar planets. II. Physical properties
- Inflating and Deflating Hot Jupiters: Coupled Tidal and Thermal Evolution of Known Transiting Planets
- An Improved Method for Estimating the Masses of Stars with Transiting Planets
- A method for the direct determination of the surface gravities of transiting extrasolar planets
- TrES-3: A Nearby, Massive, Transiting Hot Jupiter in a 31-Hour Orbit
- Detection of a Temperature Inversion in the Broadband Infrared Emission Spectrum of TrES-4
- TrES-4: A Transiting Hot Jupiter of Very Low Density
- The Transit Light Curve Project. VII. The Not-So-Bloated Exoplanet HAT-P-1b
- Ground-based near-UV observations of 15 transiting exoplanets: Constraints on their atmospheres and no evidence for asymmetrical transits
- Kepler-4b: Hot Neptune-Like Planet of a G0 Star Near Main-Sequence Turnoff
- TESS Transit Timing of Hundreds of Hot Jupiters
- Evryscope science: exploring the potential of all-sky gigapixel-scale telescopes
- Extrasolar Planet Transits Observed at Kitt Peak National Observatory
- Thermal Emission from Transiting Very-Hot Jupiters: Prospects for Ground-based Detection at Optical Wavelengths
- Hot Jupiters and the evolution of stellar angular momentum
- High-precision photometry by telescope defocussing. II. The transiting planetary system WASP-4
- HAT-P-9b: A Low Density Planet Transiting a Moderately Faint F star
- ExoClock Project III: 450 new exoplanet ephemerides from ground and space observations
- Empirical Constraints on Trojan Companions and Orbital Eccentricities in 25 Transiting Exoplanetary Systems
- Two Upper Limits on the Rossiter-McLaughlin Effect, with Differing Implications: WASP-1 has a High Obliquity and WASP-2 is Indeterminate
- The spin-orbit angles of the transiting exoplanets WASP-1b, WASP-24b, WASP-38b and HAT-P-8b from Rossiter-McLaughlin observations
- High-precision photometry by telescope defocussing. III. The transiting planetary system WASP-2
- ExoClock project II: A large-scale integrated study with 180 updated exoplanet ephemerides
- WASP-1: A lithium- and metal-rich star with an oversized planet
- Using Stellar Densities to Evaluate Transiting Exoplanetary Candidates
- The Centurion 18 telescope of the Wise Observatory
- TASTE IV. Refining ephemeris and orbital parameters for HAT-P-20b and WASP-1b
- Radii of Rapidly-Rotating Stars, with Application to Transiting-Planet Hosts
- Benefits of Ground-Based Photometric Follow-Up for Transiting Extrasolar Planets Discovered with Kepler and CoRoT
- An iterative filter to reconstruct planetary transit signals in the presence of stellar variability
- The TROY project: II. Multi-technique constraints on exotrojans in nine planetary systems
- Observations of the WASP-2 System by the APOSTLE Program
- SuperWASP-North Extra-solar Planet Candidates between 3hr < RA < 6hr
- Homogeneous Transit Timing Analyses of Ten Exoplanet Systems
- Searching for transit timing variations in transiting exoplanet systems