Survival of Terrestrial N2-O2 Atmospheres in Violent XUV Environments through Efficient Atomic Line Radiative Cooling
arXiv:2210.01460 · doi:10.3847/1538-4357/ac86ca
Abstract
Atmospheres play a crucial role in planetary habitability. Around M dwarfs and young Sun-like stars, planets receiving the same insolation as the present-day Earth are exposed to intense stellar X-rays and extreme-ultraviolet (XUV) radiation. This study explores the fundamental question of whether the atmosphere of present-day Earth could survive in such harsh XUV environments. Previous theoretical studies suggest that stellar XUV irradiation is sufficiently intense to remove such atmospheres completely on short timescales. In this study, we develop a new upper-atmospheric model and re-examine the thermal and hydrodynamic responses of the thermospheric structure of an Earth-like N2-O2 atmosphere, on an Earth-mass planet, to an increase in the XUV irradiation. Our model includes the effects of radiative cooling via electronic transitions of atoms and ions, known as atomic line cooling, in addition to the processes accounted for by previous models. We demonstrate that atomic line cooling dominates over the hydrodynamic effect at XUV irradiation levels greater than several times the present level of the Earth. Consequentially, the atmosphere's structure is kept almost hydrostatic, and its escape remains sluggish even at XUV irradiation levels up to a thousand times that of the Earth at present. Our estimates for the Jeans escape rates of N2-O2 atmospheres suggest that these 1 bar atmospheres survive in early active phases of Sun-like stars. Even around active late M dwarfs, N2-O2 atmospheres could escape significant thermal loss on timescales of gigayears. These results give new insights into the habitability of terrestrial exoplanets and the Earth's climate history.
Published 2022 September 29 in ApJ
References in corpus (14)
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- Atmospheric Escape from Hot Jupiters
- Constraining the Age-Activity Relation for Cool Stars: The SDSS DR5 Low-Mass Star Spectroscopic Sample
- CHIANTI -- an atomic database for emission lines -- Paper XVI: Version 10, further extensions
- The active lives of stars: a complete description of rotation and XUV evolution of F, G, K, and M dwarfs
- The Extreme Ultraviolet and X-Ray Sun in Time: High-Energy Evolutionary Tracks of a Solar-Like Star
- The Habitable Zones of Pre-Main-Sequence Stars
- Atmospheric Escape Processes and Planetary Atmospheric Evolution
- Extreme hydrodynamic losses of Earth-like atmospheres in the habitable zones of very active stars
- Hydrodynamic escape of water vapor atmospheres near very active stars
- Monte Carlo model of electron energy degradation in a CO2 atmosphere
- Hydrodynamic Escape of Mineral Atmosphere from Hot Rocky Exoplanet. I. Model Description
- Waterworlds Probably Do Not Experience Magmatic Outgassing
- Runaway climate cooling of ocean planets in the habitable zone: a consequence of seafloor weathering enhanced by melting of high-pressure ice
Cited by in corpus (24)
- A secondary atmosphere on the rocky exoplanet 55 Cancri e
- GJ 367b is a dark, hot, airless sub-Earth
- JWST Thermal Emission of the Terrestrial Exoplanet GJ 1132b
- The erosion of large primary atmospheres typically leaves behind substantial secondary atmospheres on temperate rocky planets
- Airy worlds or barren rocks? On the survivability of secondary atmospheres around the TRAPPIST-1 planets
- The effect of a small amount of hydrogen in the atmosphere of ultrahot magma-ocean planets: atmospheric composition and escape
- JWST-TST DREAMS: Secondary Atmosphere Constraints for the Habitable Zone Planet TRAPPIST-1 e
- Heating and ionization by non-thermal electrons in the upper atmospheres of water-rich exoplanets
- Suppression of hydrodynamic escape of an H2-rich early Earth atmosphere by radiative cooling of carbon oxides
- Population-level Hypothesis Testing with Rocky Planet Emission Data: A Tentative Trend in the Brightness Temperatures of M-Earths
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- Hydrodynamic atmospheric escape in HD 189733 b: Signatures of carbon and hydrogen measured with the Hubble Space Telescope
- The Cosmic Shoreline Revisited: A Metric for Atmospheric Retention Informed by Hydrodynamic Escape
- Observing atmospheric escape in sub-Jovian worlds with JWST
- Narrow loophole for H2-dominated atmospheres on habitable rocky planets around M dwarfs
- Habitable Zone and Atmosphere Retention Distance (HaZARD) Stellar-evolution-dependent loss models of secondary atmospheres
- Self-limited tidal heating and prolonged magma oceans in the L 98-59 system
- Novel Physics of Escaping Secondary Atmospheres May Shape the Cosmic Shoreline
- Heating, Excitation, Dissociation, and Ionization of Molecules by High-Energy Photons in Planetary Atmospheres
- Evolution and Observable Properties of Rocky Planet Atmospheres
- Oxygen left behind: Atmospheric Enrichment due to Fractionation in Sub-Neptunes using BOREAS
- Modeling Atmospheric Ion Escape from Kepler-1649 b and c over Time
- The dark and featureless surface of rocky exoplanet LHS 3844 b from JWST mid-infrared spectroscopy
- An Evolving Cosmic Shoreline and Sandbar Bounding the Rocky Airless Valley