Primordial Radius Gap and Potentially Broad Core Mass Distributions of Super-Earths and Sub-Neptunes
arXiv:2008.01105 · doi:10.3847/1538-4357/abd6c7
Abstract
The observed radii distribution of {\it Kepler} exoplanets reveals two distinct populations: those that are more likely to be terrestrials () and those that are more likely to be gas-enveloped (). There exists a clear gap in the distribution of radii that separates these two kinds of planets. Mass loss processes like photoevaporation by high energy photons from the host star have been proposed as natural mechanisms to carve out this radius valley. These models favor underlying core mass function of sub-Neptunes that is sharply peaked at 4--8 but the radial-velocity follow-up of these small planets hint at a more bottom-heavy mass function. By taking into account the initial gas accretion in gas-poor (but not gas-empty) nebula, we demonstrate that 1) the observed radius valley is a robust feature that is initially carved out at formation during late-time gas accretion; and 2) that it can be reconciled with core mass functions that are broad extending well into sub-Earth regime. The maximally cooled isothermal limit prohibits cores lighter than 1--2 from accreting enough mass to appear gas-enveloped. The rocky-to-enveloped transition established at formation produces a gap in the radius distribution that shifts to smaller radii farther from the star, similar to that observed. For the best agreement with the data, our late-time gas accretion model favors dust-free accretion in hotter disks with cores slightly less dense than the Earth (0.8) drawn from a mass function that is as broad as .
Accepted to ApJ. New Figures 5 & 6 compare directly the radius gap carved out purely from late-time accretion with that from photoevaporation
References in corpus (13)
- Line and Mean Opacities for Ultracool Dwarfs and Extrasolar Planets
- Make Super-Earths, Not Jupiters: Accreting Nebular Gas onto Solid Cores at 0.1 AU and Beyond
- The Extreme Ultraviolet and X-Ray Sun in Time: High-Energy Evolutionary Tracks of a Solar-Like Star
- The Gaia-Kepler Stellar Properties Catalog. II. Planet Radius Demographics as a Function of Stellar Mass and Age
- Measuring turbulent motion in planet-forming disks with ALMA: A detection around DM Tau and non-detections around MWC 480 and V4046 Sgr
- Reduced gas accretion on super-Earths and ice giants
- An Atmospheric Structure Equation for Grain Growth
- A Spectroscopic Analysis of the California-Kepler Survey Sample: I. Stellar Parameters, Planetary Radii and a Slope in the Radius Gap
- A new class of Super-Earths formed from high-temperature condensates: HD219134 b, 55 Cnc e, WASP-47 e
- Superabundance of Exoplanet Sub-Neptunes Explained by Fugacity Crisis
- EUV irradiation of exoplanet atmospheres occurs on Gyr timescales
- CKS IX: Revisiting the Minimum-Mass Extrasolar Nebula with Precise Stellar Parameters
- Penetration of a cooling convective layer into a stably-stratified composition gradient: entrainment at low Prandtl number
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