Precise Estimates of the Physical Parameters for the Exoplanet System HD-17156 Enabled by HST FGS Transit and Asteroseismic Observations
Philip Nutzman, Ronald L. Gilliland, Peter R. McCullough, David, Charbonneau, J{\o}rgen Christensen-Dalsgaard, Hans Kjeldsen, Edmund P. Nelan,, Timothy M. Brown, Matthew J. Holman

TL;DR
This study combines HST FGS transit observations and asteroseismology data to precisely determine the physical parameters of the exoplanet HD 17156b and its host star, improving accuracy over previous measurements.
Contribution
It provides a refined measurement of the exoplanet and stellar parameters by integrating transit photometry, radial velocities, and asteroseismology, demonstrating the power of combined observational techniques.
Findings
Planet radius: 1.0870 +/- 0.0066 R_jup
Stellar radius: 1.5007 +/- 0.0076 R_sun
Transit times show no significant period variation
Abstract
We present observations of three distinct transits of HD 17156b obtained with the Fine Guidance Sensors (FGS) on board the Hubble Space Telescope} (HST). We analyzed both the transit photometry and previously published radial velocities to find the planet-star radius ratio R_p/R_s = 0.07454 +/- 0.00035, inclination i=86.49 +0.24/-0.20 deg, and scaled semi-major axis a/R = 23.19 +0.32/-0.27. This last value translates directly to a mean stellar density determination of 0.522 +0.021/-0.018 g cm^-3. Analysis of asteroseismology observations by the companion paper of Gilliland et al. (2009) provides a consistent but significantly refined measurement of the stellar mean density. We compare stellar isochrones to this density estimate and find M_s = 1.275 +/- 0.018 M_sun and a stellar age of $3.37 +0.20/-0.47 Gyr. Using this estimate of M_s and incorporating the density constraint from…
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