The effects of stellar winds on the magnetospheres and potential habitability of exoplanets
arXiv:1409.1237 · doi:10.1051/0004-6361/201424323
Abstract
Context: The principle definition of habitability for exoplanets is whether they can sustain liquid water on their surfaces, i.e. that they orbit within the habitable zone. However, the planet's magnetosphere should also be considered, since without it, an exoplanet's atmosphere may be eroded away by stellar winds. Aims: The aim of this paper is to investigate magnetospheric protection of a planet from the effects of stellar winds from solar-mass stars. Methods: We study hypothetical Earth-like exoplanets orbiting in the host star's habitable zone for a sample of 124 solar-mass stars. These are targets that have been observed by the Bcool collaboration. Using two wind models, we calculate the magnetospheric extent of each exoplanet. These wind models are computationally inexpensive and allow the community to quickly estimate the magnetospheric size of magnetised Earth-analogues orbiting cool stars. Results: Most of the simulated planets in our sample can maintain a magnetosphere of ~5 Earth radii or larger. This suggests that magnetised Earth analogues in the habitable zones of solar analogues are able to protect their atmospheres and is in contrast to planets around young active M dwarfs. In general, we find that Earth-analogues around solar-type stars, of age 1.5 Gyr or older, can maintain at least a Paleoarchean Earth sized magnetosphere. Our results indicate that planets around 0.6 - 0.8 solar-mass stars on the low activity side of the Vaughan-Preston gap are the optimum observing targets for habitable Earth analogues.
8 pages, 3 figures, accepted to Astronomy and Astrophysics
References in corpus (14)
- Improved Age Estimation for Solar-Type Dwarfs Using Activity-Rotation Diagnostics
- Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence
- Constraining the Age-Activity Relation for Cool Stars: The SDSS DR5 Low-Mass Star Spectroscopic Sample
- Large-scale magnetic topologies of late M dwarfs
- Measuring the rotation period distribution of field M-dwarfs with Kepler
- Stellar magnetism: empirical trends with age and rotation
- Large-scale magnetic topologies of early M dwarfs
- Early UV Ingress in WASP-12b: Measuring Planetary Magnetic Fields
- Tidal Heating of Terrestrial Extra-Solar Planets and Implications for their Habitability
- Powerful Winds from Low-Mass Stars: V374 Peg
- The shocking transit of WASP-12b: Modelling the observed early ingress in the near ultraviolet
- Theoretical mass loss rates of cool main-sequence stars
- Radio emission from exoplanets: the role of the stellar coronal density and magnetic field strength
- Modeling the Young Sun's Solar Wind and its Interaction with Earth's Paleomagnetosphere
Cited by in corpus (29)
- Stellar Winds on the Main-Sequence II: the Evolution of Rotation and Winds
- The evolution of the solar wind
- On the environment surrounding close-in exoplanets
- Stellar Winds on the Main-Sequence I: Wind Model
- The Interaction of Venus-like, M-dwarf Planets with the Stellar Wind of Their Host Star
- Exoplanets as probes of the winds of host stars: the case of the M dwarf GJ 436
- The open flux evolution of a solar-mass star on the main sequence
- Differentiating Modern and Prebiotic Earth Scenarios for TRAPPIST-1e: High-resolution Transmission Spectra and Predictions for JWST
- Lightning climatology of exoplanets and brown dwarfs guided by Solar System data
- Estimating stellar wind parameters from low-resolution magnetograms
- Mass Loss via Solar Wind and Coronal Mass Ejections During Solar Cycle 23 and 24
- Frequency of Coronal Mass Ejection Impacts with Early Terrestrial Planets and Exoplanets Around Active Solar-like Stars
- Can we detect aurora in exoplanets orbiting M dwarfs?
- The winds of young Solar-type stars in the Hyades
- A Helicity-Based Method to Infer the CME Magnetic Field Magnitude in Sun and Geospace: Generalization and Extension to Sun-Like and M-Dwarf Stars and Implications for Exoplanet Habitability
- MHD study of planetary magnetospheric response during extreme solar wind conditions: Earth and exoplanet magnetospheres applications
- The exoplanetary magnetosphere extension in Sun-like stars based on the solar wind -- solar UV relation
- 3-D climate simulations for the detectability of Proxima Centauri b
- On Earth's habitability over the Sun's main-sequence history: joint influence of space weather and Earth's magnetic field evolution
- Impact of Changing Stellar and Planetary Magnetic Fields on (Exo)planetary Environments and Atmospheric Mass Loss
- Electric sails are potentially more effective than light sails near most stars
- Impact of M-dwarf Stellar Wind and Photoevaporation on the Atmospheric Evolution of Small Planets
- Non-thermal emission from the interaction of magnetized exoplanets with the wind of their host star
- A circularly polarized low-frequency radio burst from the exoplanetary system HD 189733
- The impact of stellar winds and tidal locking effects on the habitability of Earth-like exoplanets around M dwarf stars
- Polytropic Wind Solutions via the Complex Plane Strategy
- Modeling Atmospheric Ion Escape from Kepler-1649 b and c over Time
- Corotating Interaction Regions (CIRs): evolution over a solar lifetime
- Interaction between Winds from Weak-lined T Tauri Stars with Exoplanetary Magnetospheres