Potential long-term habitable conditions on planets with primordial H-He atmospheres
arXiv:2206.13859 · doi:10.1038/s41550-022-01699-8
Abstract
Cold super-Earths which retain their primordial, H-He dominated atmosphere could have surfaces that are warm enough to host liquid water. This would be due to the collision induced absorption (CIA) of infra-red light by hydrogen, which increases with pressure. However, the long-term potential for habitability of such planet has not been explored yet. Here we investigate the duration of this potential exotic habitability by simulating planets of different core masses, envelope masses and semi-major axes. We find that terrestrial and super-Earth planets with masses of 1 - 10 can maintain temperate surface conditions up to 5 - 8 Gyr at radial distances larger than 2 AU. The required envelope masses are (which is 2 orders of magnitude more massive than Earth's), but can be an order of magnitude smaller (when close-in) or larger (when far out). This result suggests that the concept of planetary habitability should be revisited and made more inclusive with respect to the classical definition.
46 pages, 9 figures. Published in Nature Astronomy and available as read-only at https://rdcu.be/cQus6
References in corpus (22)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- Mass-Radius Relationships for Solid Exoplanets
- Most 1.6 Earth-Radius Planets are not Rocky
- Atmospheric Escape from Hot Jupiters
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- On the radiative equilibrium of irradiated planetary atmospheres
- Roche lobe effects on the atmospheric loss of "Hot Jupiters"
- Planetary population synthesis coupled with atmospheric escape: a statistical view of evaporation
- Revisited Mass-Radius relations for exoplanets below 120 Earth masses
- A decreased probability of habitable planet formation around low-mass stars
- Habitable Evaporated Cores: Transforming Mini-Neptunes into Super-Earths in the Habitable Zones of M Dwarfs
- Habitability and Biosignatures of Hycean Worlds
- The Habitable Zones of Pre-Main-Sequence Stars
- A water budget dichotomy of rocky protoplanets from Al-heating
- Predictions of the Nancy Grace Roman Space Telescope Galactic Exoplanet Survey II: Free-Floating Planet Detection Rates
- Hydrodynamics of embedded planets' first atmospheres - III. The role of radiation transport for super-Earth planets
- A Volcanic Hydrogen Habitable Zone
- Hydrogen dominated atmospheres on terrestrial mass planets: evidence, origin and evolution
- Testing the Early Mars H2-CO2 Greenhouse Hypothesis with a 1-D Photochemical Model
- To cool is to keep: Residual H/He atmospheres of super-Earths and sub-Neptunes
- Steady State by Recycling prevents Premature Collapse of Protoplanetary Atmospheres
- Presence of water on exomoons orbiting free-floating planets: a case study
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- Presence of liquid water during the evolution of exomoons orbiting ejected free-floating planets
- Chasing Nomadic Worlds: A New Class of Deep Space Missions
- The Implications of 'Oumuamua on Panspermia
- Bioverse: Potentially Observable Exoplanet Biosignature Patterns Under the UV Threshold Hypothesis for the Origin of Life