English

High atmospheric metal enrichment for a Saturn-mass planet

Earth and Planetary Astrophysics 2023-03-28 v1

Abstract

Atmospheric metal enrichment (i.e., elements heavier than helium, also called "metallicity") is a key diagnostic of the formation of giant planets. The giant planets of the solar system exhibit an inverse relationship between mass and both their bulk metallicities and atmospheric metallicities. Extrasolar giant planets also display an inverse relationship between mass and bulk metallicity. However, there is significant scatter in the relationship and it is not known how atmospheric metallicity correlates with either planet mass or bulk metallicity. Here we show that the Saturn-mass exoplanet HD 149026b has an atmospheric metallicity 59 - 276 times solar (at 1 σ\sigma), which is greater than Saturn's atmospheric metallicity of ~7.5 times solar at >4 σ\sigma confidence. This result is based on modeling CO2_2 and H2_2O absorption features in the thermal emission spectrum of the planet measured by JWST. HD 149026b is the most metal-rich giant planet known, with an estimated bulk heavy element abundance of 66 ±\pm 2% by mass. We find that the atmospheric metallicities of both HD 149026b and the solar system giant planets are more correlated with bulk metallicity than planet mass.

Keywords

Cite

@article{arxiv.2303.14206,
  title  = {High atmospheric metal enrichment for a Saturn-mass planet},
  author = {Jacob L. Bean and Qiao Xue and Prune C. August and Jonathan Lunine and Michael Zhang and Daniel Thorngren and Shang-Min Tsai and Keivan G. Stassun and Everett Schlawin and Eva-Maria Ahrer and Jegug Ih and Megan Mansfield},
  journal= {arXiv preprint arXiv:2303.14206},
  year   = {2023}
}

Comments

Published online in Nature on March 27, 2023; a JWST thermal emission spectrum of a planet that definitely has an atmosphere ;)