The K2-3 system revisited: testing photoevaporation and core-powered mass loss with three small planets spanning the radius valley
arXiv:2207.12755 · doi:10.3847/1538-3881/ac7807
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.
15 pages, 7 figure, published in AJ, HLSPs at https://archive.stsci.edu/hlsp/mstarpanspec
References in corpus (21)
- The Gaia mission
- The K2 Mission: Characterization and Early results
- Most 1.6 Earth-Radius Planets are not Rocky
- EXOFAST: A fast exoplanetary fitting suite in IDL
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- Improving PARSEC models for very low mass stars
- Growth Model Interpretation of Planet Size Distribution
- Roche lobe effects on the atmospheric loss of "Hot Jupiters"
- CHIANTI -- an atomic database for emission lines -- Paper XVI: Version 10, further extensions
- The H emission of nearby M dwarfs and its relation to stellar rotation
- VULCAN: an Open-Source, Validated Chemical Kinetics Python Code for Exoplanetary Atmospheres
- Atmospheric Mass Loss During Planet Formation: The Importance of Planetesimal Impacts
- A nearby M star with three transiting super-Earths discovered by K2
- The Factory and The Beehive II. Activity and Rotation in Praesepe and the Hyades
- Pale Orange Dots: The Impact of Organic Haze on the Habitability and Detectability of Earthlike Exoplanets
- The MUSCLES Treasury Survey IV: Scaling Relations for Ultraviolet, Ca II K, and Energetic Particle Fluxes from M Dwarfs
- A Spectroscopic Analysis of the California-Kepler Survey Sample: I. Stellar Parameters, Planetary Radii and a Slope in the Radius Gap
- Testing exoplanet evaporation with multi-transiting systems
- Hydrogen dominated atmospheres on terrestrial mass planets: evidence, origin and evolution
- Ocean Dynamics and the Inner Edge of the Habitable Zone for Tidally Locked Terrestrial Planets
- Susceptibility of planetary atmospheres to mass loss and growth by planetesimal impacts: the impact shoreline
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