Planetary population synthesis coupled with atmospheric escape: a statistical view of evaporation
arXiv:1409.2879 · doi:10.1088/0004-637X/795/1/65
Abstract
We apply hydrodynamic evaporation models to different synthetic planet populations that were obtained from a planet formation code based on a core-accretion paradigm. We investigated the evolution of the planet populations using several evaporation models, which are distinguished by the driving force of the escape flow (X-ray or EUV), the heating efficiency in energy-limited evaporation regimes, or both. Although the mass distribution of the planet populations is barely affected by evaporation, the radius distribution clearly shows a break at approximately 2 . We find that evaporation can lead to a bimodal distribution of planetary sizes (Owen & Wu 2013) and to an "evaporation valley" running diagonally downwards in the orbital distance - planetary radius plane, separating bare cores from low-mass planet that have kept some primordial H/He. Furthermore, this bimodal distribution is related to the initial characteristics of the planetary populations because low-mass planetary cores can only accrete small primordial H/He envelopes and their envelope masses are proportional to their core masses. We also find that the population-wide effect of evaporation is not sensitive to the heating efficiency of energy-limited description. However, in two extreme cases, namely without evaporation or with a 100\% heating efficiency in an evaporation model, the final size distributions show significant differences; these two scenarios can be ruled out from the size distribution of candidates.
Accepted for publication in ApJ; 24 pages, 16 figures
References in corpus (13)
- Atmospheric Escape from Hot Jupiters
- On the radiative equilibrium of irradiated planetary atmospheres
- Line and Mean Opacities for Ultracool Dwarfs and Extrasolar Planets
- Roche lobe effects on the atmospheric loss of "Hot Jupiters"
- Migration and the formation of systems of hot super-Earths and Neptunes
- Ocean Planet or Thick Atmosphere: On the Mass-Radius Relationship for Solid Exoplanets with Massive Atmospheres
- Formation of Jupiter using opacities based on detailed grain physics
- Exoplanet HD 209458b : Evaporation strengthened
- On the Absorption and Redistribution of Energy in Irradiated Planets
- Probing the Blow-Off Criteria of Hydrogen-Rich "Super-Earths"
- Growing and moving low-mass planets in non-isothermal disks
- Grain opacity and the bulk composition of extrasolar planets. I. Results from scaling the ISM opacity
- 3D MHD Simulations of Planet Migration in Turbulent Stratified Disks
Cited by in corpus (23)
- The imprint of exoplanet formation history on observable present-day spectra of hot Jupiters
- A generalized bayesian inference method for constraining the interiors of super Earths and sub-Neptunes
- Hubble PanCET: An extended upper atmosphere of neutral hydrogen around the warm Neptune GJ 3470 b
- Observing transiting planets with JWST -- Prime targets and their synthetic spectral observations
- A water budget dichotomy of rocky protoplanets from Al-heating
- Characterization of exoplanets from their formation III: The statistics of planetary luminosities
- A Spectroscopic Analysis of the California-Kepler Survey Sample: I. Stellar Parameters, Planetary Radii and a Slope in the Radius Gap
- Grain opacity and the bulk composition of extrasolar planets. II. An analytical model for the grain opacity in protoplanetary atmospheres
- LAMOST telescope reveals that Neptunian cousins of hot Jupiters are mostly single offspring of stars that are rich in heavy elements
- Heavy metal rules. I. Exoplanet incidence and metallicity
- Deflating Super-Puffs: Impact of Photochemical Hazes on the Observed Mass-Radius Relationship of Low Mass Planets
- Testing exoplanet evaporation with multi-transiting systems
- Bayesian analysis of interiors of HD 219134b, Kepler-10b, Kepler-93b, CoRoT-7b, 55 Cnc e, and HD 97658b using stellar abundance proxies
- Hot, rocky and warm, puffy super-Earths orbiting TOI-402 (HD 15337)
- Close-in sub-Neptunes reveal the past rotation history of their host stars: atmospheric evolution of planets in the HD3167 and K2-32 planetary systems
- MOVES III. Simultaneous X-ray and ultraviolet observations unveiling the variable environment of the hot Jupiter HD 189733b
- SALT observations of the Chromospheric Activity of Transiting Planet Hosts: Mass Loss and Star Planet Interactions
- Photo-evaporation of close-in gas giants orbiting around G and M stars
- Examining the Radius Valley: a Machine Learning Approach
- Near Mean-motion Resonances in the Systems Observed by Kepler: Affected by Mass Accretion and Type I Migration
- Hot Super-Earths with Hydrogen Atmospheres: A Model Explaining Their Paradoxical Existence
- The scattering outcomes of Kepler circumbinary planets: planet mass ratio
- Effects of Planetesimal Accretion on the Thermal and Structural Evolution of Sub-Neptunes