Improved parameters of seven Kepler giant companions characterized with SOPHIE and HARPS-N
A. S. Bonomo, A. Sozzetti, A. Santerne, M. Deleuil, J.-M. Almenara, G., Bruno, R. F. D\'iaz, G. H\'ebrard, and C. Moutou

TL;DR
This study refines the parameters of seven Kepler giant companions using combined radial velocity and Kepler data, revealing new insights into their sizes, densities, and orbital characteristics, with implications for their compositions and stellar properties.
Contribution
It provides improved system parameters through combined data analysis and spectral re-evaluation, offering more accurate characterizations of these exoplanets and their host stars.
Findings
Kepler-41b is larger and less dense than previously thought
Kepler-44b is smaller and denser than earlier estimates
Some eccentricities may be spurious, affecting size and density estimates
Abstract
Radial-velocity observations of Kepler candidates obtained with the SOPHIE and HARPS-N spectrographs have permitted unveiling the nature of the five giant planets Kepler-41b, Kepler-43b, Kepler-44b, Kepler-74b, and Kepler-75b, the massive companion Kepler-39b, and the brown dwarf KOI-205b. These companions were previously characterized with long-cadence (LC) Kepler data. Here we aim at refining the parameters of these transiting systems by i) modelling the published radial velocities (RV) and Kepler short-cadence (SC) data that provide a much better sampling of the transits, ii) performing new spectral analyses of the SOPHIE and ESPaDOnS spectra, and iii) improving stellar rotation periods hence stellar age estimates through gyrochronology, when possible. Posterior distributions of the system parameters were derived with a differential evolution Markov chain Monte Carlo approach. Our…
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