English

The K2-3 system revisited: testing photoevaporation and core-powered mass loss with three small planets spanning the radius valley

Earth and Planetary Astrophysics 2022-10-05 v2 Solar and Stellar Astrophysics

Abstract

Multi-planet systems orbiting M dwarfs provide valuable tests of theories of small planet formation and evolution. K2-3 is an early M dwarf hosting three small exoplanets (1.5-2.0 Earth radii) at distances of 0.07-0.20 AU. We measure the high-energy spectrum of K2-3 with HST/COS and XMM-Newton, and use empirically-driven estimates of Ly-alpha and extreme ultraviolet flux. We use EXOFASTv2 to jointly fit radial velocity, transit, and SED data. This constrains the K2-3 planet radii to 4% uncertainty and the masses of K2-3b and c to 13% and 30%, respectively; K2-3d is not detected in RV measurements. K2-3b and c are consistent with rocky cores surrounded by solar composition envelopes (mass fractions of 0.36% and 0.07%), H2O envelopes (55% and 16%), or a mixture of both. However, based on the high-energy output and estimated age of K2-3, it is unlikely that K2-3b and c retain solar composition atmospheres. We pass the planet parameters and high-energy stellar spectrum to atmospheric models. Dialing the high-energy spectrum up and down by a factor of 10 produces significant changes in trace molecule abundances, but not at a level detectable with transmission spectroscopy. Though the K2-3 planets span the small planet radius valley, the observed system architecture cannot be readily explained by photoevaporation or core-powered mass loss. We instead propose 1) the K2-3 planets are all volatile-rich, with K2-3d having a lower density than typical of super-Earths, and/or 2) the K2-3 planet architecture results from more stochastic processes such as planet formation, planet migration, and impact erosion.

Keywords

Cite

@article{arxiv.2207.12755,
  title  = {The K2-3 system revisited: testing photoevaporation and core-powered mass loss with three small planets spanning the radius valley},
  author = {Hannah Diamond-Lowe and Laura Kreidberg and C. E. Harman and Eliza M. -R. Kempton and Leslie A. Rogers and Simon R. G. Joyce and Jason D. Eastman and George W. King and Ravi Kopparapu and Allison Youngblood and Molly R. Kosiarek and John H. Livingston and Kevin K. Hardegree-Ullman and Ian J. M. Crossfield},
  journal= {arXiv preprint arXiv:2207.12755},
  year   = {2022}
}

Comments

15 pages, 7 figure, published in AJ, HLSPs at https://archive.stsci.edu/hlsp/mstarpanspec