English

EPIC 201498078b: A low density Super Neptune on an eccentric orbit

Earth and Planetary Astrophysics 2018-12-05 v1 Solar and Stellar Astrophysics

Abstract

We report the discovery of EPIC 201498078b, which was first identified as a planetary candidate from Kepler K2 photometry of Campaign 14, and whose planetary nature and orbital parameters were then confirmed with precision radial velocities. EPIC 201498078b is half as massive as Saturn (MP\rm M_P=0.179±0.0210.179 \pm 0.021 MJ\rm M_J), and has a radius of RP\rm R_P=0.840±0.0110.840 \pm 0.011 RJ\rm R_J, which translates into a bulk density of ρP \rm \rho_P=0.37±0.050.37 \pm 0.05 g cm3^{-3}. EPIC 201498078b transits its slightly evolved G-type host star (M\rm M_{\star}=1.105±0.0191.105 \pm 0.019 M\rm M_{\odot}, RP\rm R_P=1.669±0.0221.669 \pm 0.022 R\rm R_{\odot}) every 11.63364±0.0001011.63364 \pm 0.00010 days and presents a significantly eccentric orbit (e=0.420±0.034e=0.420 \pm 0.034). We estimate a relatively short circularization timescale of 1.8 Gyr for the planet, but given the advanced age of the system we expect the planet to be engulfed by its evolving host star in 1\sim 1 Gyr before the orbit circularizes. The low density of the planet coupled to the brightness of the host star (J=9.4J=9.4) makes this system one of the best candidates known to date in the super-Neptune regime for atmospheric characterization via transmission spectroscopy, and to further study the transition region between ice and gas giant planets.

Keywords

Cite

@article{arxiv.1806.04073,
  title  = {EPIC 201498078b: A low density Super Neptune on an eccentric orbit},
  author = {Rafael Brahm and Nestor Espinoza and Markus Rabus and Andrés Jordán and Matías R. Diaz and Felipe Rojas and Maja Vučković and Abner Zapata and Cristián Cortés and Holger Drass and James S. Jenkins and Régis Lachaume and Blake Pantoja and Paula Sarkis and Maritza G. Soto and Sergio Vásquez and Thomas Henning and Matías I. Jones},
  journal= {arXiv preprint arXiv:1806.04073},
  year   = {2018}
}

Comments

submitted to MNRAS, 11 pages, 10 figures

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