Ionization in atmospheres of Brown Dwarfs and extrasolar planets IV. The Effect of Cosmic Rays
arXiv:1307.3257 · doi:10.1088/0004-637X/774/2/108
Abstract
Cosmic rays provide an important source for free electrons in the Earth's atmosphere and also in dense interstellar regions where they produce a prevailing background ionization. We utilize a Monte Carlo cosmic ray transport model for particle energies of 1 MeV < E < 1 GeV, and an analytic cosmic ray transport model for particle energies of 1 GeV < E < 1 TeV in order to investigate the cosmic ray enhancement of free electrons in substellar atmospheres of free-floating objects. The cosmic ray calculations are applied to Drift-Phoenix model atmospheres of an example brown dwarf with effective temperature Teff = 1500 K, and two example giant gas planets (Teff = 1000 K, 1500 K). For the model brown dwarf atmosphere, the electron fraction is enhanced significantly by cosmic rays when the pressure pgas < 10^-2 bar. Our example giant gas planet atmosphere suggests that the cosmic ray enhancement extends to 10^-4 - 10^-2 bar, depending on the effective temperature. For the model atmosphere of the example giant gas planet considered here (Teff = 1000 K), cosmic rays bring the degree of ionization to fe ~ 10^-8 when pgas < 10^-8 bar, suggesting that this part of the atmosphere may behave as a weakly ionized plasma. Although cosmic rays enhance the degree of ionization by over three orders of magnitude in the upper atmosphere, the effect is not likely to be significant enough for sustained coupling of the magnetic field to the gas.
16 pages, 9 figures, accepted to ApJ
References in corpus (7)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Atmospheric Escape from Hot Jupiters
- Large-scale magnetic topologies of early M dwarfs
- H3+ in Diffuse Interstellar Clouds: a Tracer for the Cosmic-Ray Ionization Rate
- The First Direct Measurements of Magnetic Fields on Very Low-Mass Stars
- A comparison of chemistry and dust cloud formation in ultracool dwarf model atmospheres
- Coronal Structure of Low-Mass Stars
Cited by in corpus (34)
- Exoplanetary Atmospheres - Chemistry, Formation Conditions, and Habitability
- M-dwarf stellar winds: the effects of realistic magnetic geometry on rotational evolution and planets
- A Chemical Kinetics Network for Lightning and Life in Planetary Atmospheres
- The evolution of the solar wind
- Exoplanet Clouds
- Atmospheres of Brown Dwarfs
- Modelling the local and global cloud formation on HD 189733b
- Sparkling nights and very hot days on WASP-18b: the formation of clouds and the emergence of an ionosphere
- Cloud property trends in hot and ultra-hot giant gas planets (WASP-43b, WASP-103b, WASP-121b, HAT-P-7b, and WASP-18b)
- From cold to hot irradiated gaseous exoplanets: Fingerprints of chemical disequilibrium in atmospheric spectra
- The large-scale magnetic field of Proxima Centauri near activity maximum
- A Signature of Chromospheric Activity in Brown Dwarfs Revealed by 2.5-5.0 Micron AKARI Spectra
- MOVES I. The evolving magnetic field of the planet-hosting star HD189733
- Reference study to characterise plasma and magnetic properties of ultra-cool atmospheres
- MOVES IV. Modelling the influence of stellar XUV-flux, cosmic rays, and stellar energetic particles on the atmospheric composition of the hot Jupiter HD 189733b
- Ionisation in atmospheres of brown dwarfs and extrasolar planets VI: Properties of large-scale discharge events
- Lightning climatology of exoplanets and brown dwarfs guided by Solar System data
- Ionization in Atmospheres of Brown Dwarfs and Extrasolar Planets V: Alfvén Ionization
- Stellar versus Galactic: The intensity of cosmic rays at the evolving Earth and young exoplanets around Sun-like stars
- The Galactic cosmic ray intensity at the evolving Earth and young exoplanets
- Presence of water on exomoons orbiting free-floating planets: a case study
- Lightning and charge processes in brown dwarf and exoplanet atmospheres
- Atmospheric electrification in dusty, reactive gases in the solar system and beyond
- The Earth-like Galactic cosmic ray intensity in the habitable zone of the M dwarf GJ 436
- Electrostatic activation of prebiotic chemistry in substellar atmospheres
- Ionisation and discharge in cloud-forming atmospheres of brown dwarfs and extrasolar planets
- The energetic particle environment of a GJ 436 b-like planet
- The strong suppression of Galactic cosmic rays reaching AU Mic b, c and Prox Cen b
- Flash ionisation signature in coherent cyclotron emission from Brown Dwarfs
- Galactic cosmic ray propagation through M dwarf planetary systems
- Under the magnifying glass: A combined 3D model applied to cloudy warm Saturn type exoplanets around M-dwarfs
- Dust cloud evolution in sub-stellar atmospheres via plasma deposition and plasma sputtering
- Cosmic ray ionisation of a post-impact early Earth atmosphere: Solar cosmic ray ionisation must be considered in origin-of-life scenarios
- Evolution of spheroidal dust in electrically active sub-stellar atmospheres