Photometrically derived masses and radii of the planet and star in the TrES-2 system
Thomas Barclay, Daniel Huber, Jason F. Rowe, Jonathan J. Fortney,, Caroline V. Morley, Elisa V. Quintana, Daniel C. Fabrycky, Geert Barentsen,, Steven Bloemen, Jessie L. Christiansen, Brice-Olivier Demory, Benjamin J., Fulton, Jon M. Jenkins, Fergal Mullally, Darin Ragozzine

TL;DR
Using 2.7 years of Kepler data, the study precisely measures the masses and radii of the star TrES-2A and its planet TrES-2b, analyzes their atmospheric properties, and confirms the planet's characteristics with high accuracy.
Contribution
First photometric determination of TrES-2b's mass and radius using Kepler data combined with asteroseismology for stellar parameters.
Findings
Stellar mass: 0.94 solar masses
Planetary radius: 1.162 Jupiter radii
Planet mass: 1.44 Jupiter masses
Abstract
We measure the mass and radius of the star and planet in the TrES-2 system using 2.7 years of observations by the Kepler spacecraft. The light curve shows evidence for ellipsoidal variations and Doppler beaming on a period consistent with the orbital period of the planet with amplitudes of 2.79+0.44-0.62 and 3.44+0.32-0.37 parts per million (ppm) respectively, and a difference between the day and night side planetary flux of 3.41+0.55-0.82 ppm. We present an asteroseismic analysis of solar-like oscillations on TrES-2A which we use to calculate the stellar mass of 0.94+/-0.05 MSun and radius of 0.95+/-0.02 RSun. Using these stellar parameters, a transit model fit and the phase curve variations, we determine the planetary radius of 1.162+0.020-0.024 RJup and derive a mass for TrES-2b from the photometry of 1.44+/-0.21 MJup. The ratio of the ellipsoidal variation to the Doppler beaming…
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