English

Irradiated ocean planets bridge super-Earth and sub-Neptune populations

Earth and Planetary Astrophysics 2020-06-24 v2

Abstract

Small planets (\sim1--3.9 \Rearth\Rearth) constitute more than half of the inventory of the 4000-plus exoplanets discovered so far. Smaller planets are sufficiently dense to be rocky, but those with radii larger than \sim1.6 \Rearth\Rearth are thought to display in many cases hydrogen/helium gaseous envelopes up to \sim30\% of the planetary mass. These low-mass planets are highly irradiated and the question of their origin, evolution, and possible links remains open. Here we show that close-in ocean planets affected by greenhouse effect display hydrospheres in supercritical state, which generate inflated atmospheres without invoking the presence of large hydrogen/helium gaseous envelopes. We present a new set of mass-radius relationships for ocean planets with different compositions and different equilibrium temperatures, which are found to be well adapted to low-density sub-Neptune planets. Our model suggests that super-Earths and water-rich sub-Neptunes could belong to the same family of planets, i.e. hydrogen/helium-free planets, with differences between their interiors simply resulting from the variation in the water content.

Keywords

Cite

@article{arxiv.2002.05243,
  title  = {Irradiated ocean planets bridge super-Earth and sub-Neptune populations},
  author = {Olivier Mousis and Magali Deleuil and Artyom Aguichine and Emmanuel Marcq and Joseph Naar and Lorena Acuña Aguirre and Bastien Brugger and Thomas Goncalves},
  journal= {arXiv preprint arXiv:2002.05243},
  year   = {2020}
}

Comments

Accepted for publication in The Astrophysical Journal Letters