A Limited Habitable Zone for Complex Life
arXiv:1902.04720 · doi:10.3847/1538-4357/ab1d52
Abstract
The habitable zone (HZ) is commonly defined as the range of distances from a host star within which liquid water, a key requirement for life, may exist on a planet's surface. Substantially more CO2 than present in Earth's modern atmosphere is required to maintain clement temperatures for most of the HZ, with several bars required at the outer edge. However, most complex aerobic life on Earth is limited by CO2 concentrations of just fractions of a bar. At the same time, most exoplanets in the traditional HZ reside in proximity to M dwarfs, which are more numerous than Sun-like G dwarfs but are predicted to promote greater abundances of gases that can be toxic in the atmospheres of orbiting planets, such as carbon monoxide (CO). Here we show that the HZ for complex aerobic life is likely limited relative to that for microbial life. We use a 1D radiative-convective climate and photochemical models to circumscribe a Habitable Zone for Complex Life (HZCL) based on known toxicity limits for a range of organisms as a proof of concept. We find that for CO2 tolerances of 0.01, 0.1, and 1 bar, the HZCL is only 21%, 32%, and 50% as wide as the conventional HZ for a Sun-like star, and that CO concentrations may limit some complex life throughout the entire HZ of the coolest M dwarfs. These results cast new light on the likely distribution of complex life in the universe and have important ramifications for the search for exoplanet biosignatures and technosignatures.
Revised including additional discussion. Published Gold OA in ApJ. 9 pages, 5 figures, 5 tables
References in corpus (16)
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- The Pale Orange Dot: The Spectrum and Habitability of Hazy Archean Earth
- The habitability of Proxima Centauri b II. Possible climates and Observability
- The habitability of Proxima Centauri b. I. Irradiation, rotation and volatile inventory from formation to the present
- Maximizing the ExoEarth Candidate Yield from a Future Direct Imaging Mission
- A Catalog of Kepler Habitable Zone Exoplanet Candidates
- Spectral Fingerprints of Earth-like Planets Around FGK Stars
- Pale Orange Dots: The Impact of Organic Haze on the Habitability and Detectability of Earthlike Exoplanets
- The Response of Atmospheric Chemistry on Earthlike Planets around F, G and K Stars to Small Variations in Orbital Distance
- Detectability of atmospheric features of Earth-like planets in the habitable zone around M dwarfs
- A Volcanic Hydrogen Habitable Zone
- Rethinking CO Antibiosignatures in the Search for Life Beyond the Solar System
- Why do we find ourselves around a yellow star instead of a red star?
- The Moist Greenhouse is Sensitive to Stratospheric Temperature