English

K2-113b: A dense hot-Jupiter transiting a solar analogue

Earth and Planetary Astrophysics 2017-08-30 v2

Abstract

We present the discovery of K2-113b, a dense hot-Jupiter discovered using photometry from Campaign 8 of the Kepler-2 (K2) mission and high-resolution spectroscopic follow up obtained with the FEROS spectrograph. The planet orbits a V=13.68V=13.68 solar analogue in a P=5.817600.00003+0.00003P=5.81760^{+0.00003}_{-0.00003} day orbit, has a radius of 0.930.07+0.10RJ0.93^{+0.10}_{-0.07}R_J and a mass of 1.290.14+0.13MJ1.29^{+0.13}_{-0.14}M_J. With a density of 1.970.53+0.601.97^{+0.60}_{-0.53} gr/cm3^3, the planet is among the densest systems known having masses below 2 MJM_J and Teq>1000T_{eq} > 1000, and is just above the temperature limit at which inflation mechanisms are believed to start being important. Based on its mass and radius, we estimate that K2-113b should have a heavy element content on the order of \sim 110 MM_{\oplus} or greater.

Keywords

Cite

@article{arxiv.1611.07614,
  title  = {K2-113b: A dense hot-Jupiter transiting a solar analogue},
  author = {Néstor Espinoza and Markus Rabus and Rafael Brahm and Matías Jones and Andrés Jordán and Felipe Rojas and Holger Drass and Maja Vučković and Joel D. Hartman and James S. Jenkins and Cristián Cortés},
  journal= {arXiv preprint arXiv:1611.07614},
  year   = {2017}
}

Comments

8 pages, 7 figures. Accepted to MNRAS; added new photometry from newest version of EVEREST, which allows for a constrain on the secondary eclipse depth