Terminator Habitability: the Case for Limited Water Availability on M-dwarf Planets
arXiv:2212.06185 · doi:10.3847/1538-4357/aca970
Abstract
Rocky planets orbiting M-dwarf stars are among the most promising and abundant astronomical targets for detecting habitable climates. Planets in the M-dwarf habitable zone are likely synchronously rotating, such that we expect significant day-night temperature differences, and potentially limited fractional habitability. Previous studies have focused on scenarios where fractional habitability is confined to the substellar or "eye" region, but in this paper we explore the possibility of planets with terminator habitability, defined by the existence of a habitable band at the transition between a scorching dayside and a glacial nightside. Using a global climate model, we show that for water-limited planets it is possible to have scorching temperatures in the "eye" and freezing temperatures on the nightside, while maintaining a temperate climate in the terminator region, due to a reduced atmospheric energy transport. Whereas on water-rich planets, increasing stellar flux leads to increased atmospheric energy transport and a reduction in day-night temperature differences, such that the terminator does not remain habitable once the dayside temperatures approach runaway or moist greenhouse limits. We also show that, while water-abundant simulations may result in larger fractional habitability, they are vulnerable to water loss through cold-trapping on the nightside surface or atmospheric water vapor escape, suggesting that even if planets were formed with abundant water, their climates could become water-limited and subject to terminator habitability.
16 pages, 9 figures, 3 tables, Accepted for publication in The Astronomical Journal
References in corpus (26)
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- Extreme Water Loss and Abiotic O Buildup On Planets Throughout the Habitable Zones of M Dwarfs
- Habitable planets around the star Gl 581?
- A Re-appraisal of the Habitability of Planets Around M Dwarf Stars
- The habitability of Proxima Centauri b II. Possible climates and Observability
- Strong Dependence of the Inner Edge of the Habitable Zone on Planetary Rotation Rate
- Observing the Atmospheres of Known Temperate Earth-sized Planets with JWST
- Tidal Locking of Habitable Exoplanets
- A decreased probability of habitable planet formation around low-mass stars
- Atmospheric dynamics of Earth-like tidally locked aquaplanets
- The Habitable Zones of Pre-Main-Sequence Stars
- Impact of Clouds and Hazes on the Simulated JWST Transmission Spectra of Habitable Zone Planets in the TRAPPIST-1 System
- Volatile Delivery to Planets from Water-rich Planetesimals around Low Mass Stars
- Prospects for Characterizing the Atmosphere of Proxima Centauri b
- The atmospheric circulation and climate of terrestrial planets orbiting Sun-like and M-dwarf stars over a broad range of planetary parameters
- Water Trapping on Tidally Locked Terrestrial Planets Requires Special Conditions
- Ocean Dynamics and the Inner Edge of the Habitable Zone for Tidally Locked Terrestrial Planets
- Spectrum-driven Planetary Deglaciation Due to Increases in Stellar Luminosity
- A Low-order Model of Water Vapor, Clouds, and Thermal Emission for Tidally Locked Terrestrial Planets
- An upper limit on late accretion and water delivery in the Trappist-1 exoplanet system
- Effects of Radius and Gravity on the Inner Edge of the Habitable Zone
- Stabilization of dayside surface liquid water via tropopause cold trapping on arid slowly rotating tidally locked planets
- How does Background Air Pressure Influence the Inner Edge of the Habitable Zone for Tidally Locked Planets in a 3D View?
- Prospects for water vapor detection in the atmospheres of temperate and arid rocky exoplanets around M-dwarf stars
- Multiple moist climate equilibrium states on arid rocky M-dwarf planets: A last-saturation tracer analysis
Cited by in corpus (13)
- Stratospheric dayside-to-nightside circulation drives the 3-D ozone distribution on synchronously rotating rocky exoplanets
- A New Definition of Exoplanet Habitability: Introducing the Photosynthetic Habitable Zone
- Water versus land on temperate rocky planets
- A One-Dimensional Energy Balance Model Parameterization for the Formation of CO2 Ice on the Surfaces of Eccentric Extrasolar Planets
- Potential Surface Ice Distribution on Close-in Terrestrial Exoplanets around M dwarfs
- Increased Surface Temperatures of Habitable White Dwarf Worlds Relative to Main-Sequence Exoplanets
- Snowball Bistability Vanishes at Moderate Orbital Eccentricity
- A novel metric for assessing climatological surface habitability
- The climates and thermal emission spectra of prime nearby temperate rocky exoplanet targets
- Carbon Cycle Imbalances on Arid Terrestrial Planets with Implications for Venus
- Planetary Rhythms: Synchronous Circulation on Variably Irradiated Asynchronous Planets
- Retention of surface water on tidally locked rocky planets in the Venus zone around M dwarfs
- Chemistry, Climate, and Transmission Spectra of TRAPPIST-1 e Explored with a Multimodel Sparse Sampled Ensemble