English

Kepler-503b: An Object at the Hydrogen Burning Mass Limit Orbiting a Subgiant Star

Solar and Stellar Astrophysics 2018-07-02 v2 Earth and Planetary Astrophysics

Abstract

Using spectroscopic radial velocities with the APOGEE instrument and Gaia distance estimates, we demonstrate that Kepler-503b, currently considered a validated Kepler planet, is in fact a brown-dwarf/low-mass star in a nearly circular 7.2-day orbit around a subgiant star. Using a mass estimate for the primary star derived from stellar models, we derive a companion mass and radius of 0.075±0.003 M0.075\pm0.003 \ M_{\odot} (78.6±3.1 MJup78.6\pm3.1 \ M_{Jup}) and 0.0990.004+0.006 R0.099^{+0.006}_{-0.004}\ R_{\odot} (0.960.04+0.06 RJup0.96^{+0.06}_{-0.04}\ R_{Jup}), respectively. Assuming the system is coeval, the evolutionary state of the primary indicates the age is 6.7\sim6.7 Gyr. Kepler-503b sits right at the hydrogen burning mass limit, straddling the boundary between brown dwarfs and very low-mass stars. More precise radial velocities and secondary eclipse spectroscopy with James Webb Space Telescope will provide improved measurements of the physical parameters and age of this important system to better constrain and understand the physics of these objects and their spectra. This system emphasizes the value of radial velocity observations to distinguish a genuine planet from astrophysical false positives, and is the first result from the SDSS-IV monitoring of Kepler planet candidates with the multi-object APOGEE instrument.

Keywords

Cite

@article{arxiv.1805.08820,
  title  = {Kepler-503b: An Object at the Hydrogen Burning Mass Limit Orbiting a Subgiant Star},
  author = {Caleb I. Cañas and Chad F. Bender and Suvrath Mahadevan and Scott W. Fleming and Thomas G. Beatty and Kevin R. Covey and Nathan De Lee and Fred R. Hearty and D. A. García-Hernández and Steven R. Majewski and Donald P. Schneider and Keivan G. Stassun and Robert F. Wilson},
  journal= {arXiv preprint arXiv:1805.08820},
  year   = {2018}
}

Comments

Accepted for publication in ApJL, 12 pages, 3 figures, 2 tables