Habitable Climates: The Influence of Obliquity
arXiv:0807.4180 · doi:10.1088/0004-637X/691/1/596
Abstract
Extrasolar terrestrial planets with the potential to host life might have large obliquities or be subject to strong obliquity variations. We revisit the habitability of oblique planets with an energy balance climate model (EBM) allowing for dynamical transitions to ice-covered snowball states as a result of ice-albedo feedback. Despite the great simplicity of our EBM, it captures reasonably well the seasonal cycle of global energetic fluxes at Earth's surface. It also performs satisfactorily against a full-physics climate model of a highly oblique Earth-like planet, in an unusual regime of circulation dominated by heat transport from the poles to the equator. Climates on oblique terrestrial planets can violate global radiative balance through much of their seasonal cycle, which limits the usefulness of simple radiative equilibrium arguments. High obliquity planets have severe climates, with large amplitude seasonal variations, but they are not necessarily more prone to global snowball transitions than low obliquity planets. We find that terrestrial planets with massive CO2 atmospheres, typically expected in the outer regions of habitable zones, can also be subject to such dynamical snowball transitions. Some of the snowball climates investigated for CO2-rich atmospheres experience partial atmospheric collapse. Since long-term CO2 atmospheric build-up acts as a climatic thermostat for habitable planets, partial CO2 collapse could limit the habitability of such planets. A terrestrial planet's habitability may thus depend sensitively on its short-term climatic stability.
Minor changes, references added. 34 pages, 13 figures, accepted by ApJ
References in corpus (7)
- Discovery of a Cool Planet of 5.5 Earth Masses Through Gravitational Microlensing
- Habitable planets around the star Gl 581?
- The HARPS search for southern extra-solar planets XI. Super-Earths (5 & 8 M_Earth) in a 3-planet system
- A Low-Mass Planet with a Possible Sub-Stellar-Mass Host in Microlensing Event MOA-2007-BLG-192
- Tides and the Evolution of Planetary Habitability
- Habitable Climates
- Predicting the Yields of Photometric Surveys for Transiting Extrasolar Planets
Cited by in corpus (74)
- The Habitability of Planets Orbiting M-dwarf Stars
- How to Characterize Habitable Worlds and Signs of Life
- Gliese 581d is the first discovered terrestrial-mass exoplanet in the habitable zone
- Doppler Signatures of the Atmospheric Circulation on Hot Jupiters
- The Effect of Host Star Spectral Energy Distribution and Ice-Albedo Feedback on the Climate of Extrasolar Planets
- Debris disks as signposts of terrestrial planet formation
- Tidal obliquity evolution of potentially habitable planets
- Habitable Climates: The Influence of Eccentricity
- Superhabitable Worlds
- Generalized Milankovitch Cycles and Longterm Climatic Habitability
- Tidal Limits to Planetary Habitability
- Exploring the Habitable Zone for Kepler planetary candidates
- Climate of Earth-like planets with high obliquity and eccentric orbits: implications for habitability conditions
- Atmospheric effects of stellar cosmic rays on Earth-like exoplanets orbiting M-dwarfs
- Atmospheric Circulation of Exoplanets
- Mercury-T: A new code to study tidally evolving multi-planet systems. Applications to Kepler-62
- Thermal Phases of Earth-Like Planets: Estimating Thermal Inertia from Eccentricity, Obliquity, and Diurnal Forcing
- The habitable zone of Earth-like planets with different levels of atmospheric pressure
- Formation, tidal evolution and habitability of the Kepler-186 system
- Climate simulations of early Mars with estimated precipitation, runoff, and erosion rates
- Spectrum-driven Planetary Deglaciation Due to Increases in Stellar Luminosity
- The Habitable Zone and Extreme Planetary Orbits
- GJ 273: On the formation, dynamical evolution and habitability of a planetary system hosted by an M dwarf at 3.75 parsec
- Bright optical dayside emission from extrasolar planet CoRoT-2b
- Inferring Planetary Obliquity Using Rotational & Orbital Photometry
- The Effect of Orbital Configuration on the Possible Climates and Habitability of Kepler-62f
- Model Spectra of the First Potentially Habitable Super-Earth - Gl581d
- On the Spin-axis Dynamics of a Moonless Earth
- Modeling the surface temperature of Earth-like planets
- Co-evolution of atmospheres, life, and climate
- Long-lived Chaotic Orbital Evolution of Exoplanets in Mean Motion Resonances with Mutual Inclinations
- Obliquity and Eccentricity Constraints For Terrestrial Exoplanets
- Assessing Circumbinary Habitable Zones using Latitudinal Energy Balance Modelling
- The Climates of Other Worlds: A Review of the Emerging Field of Exoplanet Climatology
- Habitability Models for Astrobiology
- Secular spin-axis dynamics of exoplanets
- Exo-Milankovitch Cycles II: Climates of G-dwarf Planets in Dynamically Hot Systems
- Enhanced Habitability on High Obliquity Bodies near the Outer Edge of the Habitable Zone of Sun-like Stars
- Exo-Milankovitch Cycles I: Orbits and Rotation States
- Photometric Variability of the Disk Integrated Infrared Emission of the Earth
- The Fundamental Connections Between the Solar System and Exoplanetary Science
- exocartographer: A Bayesian Framework for Mapping Exoplanets in Reflected Light
- Self-Consistent Spin, Tidal and Dynamical Equations of Motion in the REBOUNDx Framework
- Role of planetary obliquity in regulating atmospheric escape: G-dwarf vs. M-dwarf Earth-like exoplanets
- Habitability and Water Loss Limits on Eccentric Planets Orbiting Main Sequence Stars
- A dynamical study on the habitability of terrestrial exoplanets I: Tidally evolved planet-satellite pairs
- Habitability of extrasolar planets and tidal spin evolution
- Oscillations in the Habitable Zone around Alpha Centauri B
- Atmospheric Dynamics on Terrestrial Planets: The Seasonal Response to changes in Orbital, Rotational and Radiative Timescales
- Obliquity Variations of Habitable Zone Planets Kepler-62f and Kepler-186f
- Quantitative estimates of the surface habitability of Kepler-452b
- From climate models to planetary habitability: temperature constraints for complex life
- Superhabitability of High-Obliquity and High-Eccentricity Planets
- Wetter Stratospheres on High Obliquity Planets
- System Architecture and Planetary Obliquity: Implications for Long-Term Habitability
- On the radial velocity detection of additional planets in transiting, slowly rotating M-dwarf systems: the case of GJ 1132
- Obliquity Evolution of the Potentially Habitable Exoplanet Kepler-62f
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- Tropical and Extratropical General Circulation with a Meridional Reversed Temperature Gradient as Expected in a High Obliquity Planet
- An Energy Balance Model for Rapidly and Synchronously Rotating Terrestrial Planets
- Moderately High Obliquity Promotes Biospheric Oxygenation
- Effects of a Binary Companion Star on Habitability of Tidally Locked Planets around an M-type Host Star
- The Effect of Seafloor Weathering on Planetary Habitability
- Exploring Climate with Obliquity in a Variable-eccentricity Earth-like World
- Better Than Earth
- Constraints on the habitability of extrasolar moons
- Dynamical considerations for life in multihabitable planetary systems
- A One-Dimensional Energy Balance Model Parameterization for the Formation of CO2 Ice on the Surfaces of Eccentric Extrasolar Planets
- Snowball Bistability Vanishes at Moderate Orbital Eccentricity
- The impact of classical and General Relativistic obliquity precessions on the habitability of circumstellar neutron stars' planets
- A Global Perspective with Updated Constraints on the Ultra-hot Jupiter WASP-19b: Atmospheric Properties and Stellar Activity
- Impact of a moon on the evolution of a planet's obliquity: a non-resonant case
- New Worlds: Evaluating terrestrial planets as astrophysical objects
- Planetary Obliquity Excitation Through Pre-Main Sequence Stellar Evolution