English

The Kepler-19 system: a thick-envelope super-Earth with two Neptune-mass companions characterized using Radial Velocities and Transit Timing Variations

Earth and Planetary Astrophysics 2017-05-03 v1 Solar and Stellar Astrophysics

Abstract

We report a detailed characterization of the Kepler-19 system. This star was previously known to host a transiting planet with a period of 9.29 days, a radius of 2.2 R_\oplus and an upper limit on the mass of 20 M_\oplus. The presence of a second, non-transiting planet was inferred from the transit time variations (TTVs) of Kepler-19b, over 8 quarters of Kepler photometry, although neither mass nor period could be determined. By combining new TTVs measurements from all the Kepler quarters and 91 high-precision radial velocities obtained with the HARPS-N spectrograph, we measured through dynamical simulations a mass of 8.4±1.68.4 \pm 1.6 M_\oplus for Kepler-19b. From the same data, assuming system coplanarity, we determined an orbital period of 28.7 days and a mass of 13.1±2.713.1 \pm 2.7 M_\oplus for Kepler-19c and discovered a Neptune-like planet with a mass of 20.3±3.420.3 \pm 3.4 M_\oplus on a 63 days orbit. By comparing dynamical simulations with non-interacting Keplerian orbits, we concluded that neglecting interactions between planets may lead to systematic errors that could hamper the precision in the orbital parameters when the dataset spans several years. With a density of 4.32±0.874.32 \pm 0.87 g cm3^{-3} (0.78±0.160.78 \pm 0.16 ρ\rho_\oplus) Kepler-19b belongs to the group of planets with a rocky core and a significant fraction of volatiles, in opposition to low-density planets characterized by transit-time variations only and the increasing number of rocky planets with Earth-like density. Kepler-19 joins the small number of systems that reconcile transit timing variation and radial velocity measurements.

Keywords

Cite

@article{arxiv.1703.06885,
  title  = {The Kepler-19 system: a thick-envelope super-Earth with two Neptune-mass companions characterized using Radial Velocities and Transit Timing Variations},
  author = {Luca Malavolta and Luca Borsato and Valentina Granata and Giampaolo Piotto and Eric Lopez and Andrew Vanderburg and Pedro Figueira and Annelies Mortier and Valerio Nascimbeni and Laura Affer and Aldo S. Bonomo and Francois Bouchy and Lars A. Buchhave and David Charbonneau and Andrew Collier Cameron and Rosario Cosentino and Courtney D. Dressing and Xavier Dumusque and Aldo F. M. Fiorenzano and Avet Harutyunyan and Raphaëlle D. Haywood and John Asher Johnson and David W. Latham and Mercedes Lopez-Morales and Christophe Lovis and Michel Mayor and Giusi Micela and Emilio Molinari and Fatemeh Motalebi and Francesco Pepe and David F. Phillips and Don Pollacco and Didier Queloz and Ken Rice and Dimitar Sasselov and Damien Ségransan and Alessandro Sozzetti and Stéphane Udry and Chris Watson},
  journal= {arXiv preprint arXiv:1703.06885},
  year   = {2017}
}

Comments

Accepted by AJ, 15 pages, 10 figures, 6 tables. Mass-Radius diagram for Exoplanets and code available at https://github.com/LucaMalavolta and https://github.com/lucaborsato