Galactic cosmic ray propagation through M dwarf planetary systems
arXiv:2110.13712 · doi:10.1093/mnras/stab3131
Abstract
Quantifying the flux of cosmic rays reaching exoplanets around M dwarfs is essential to understand their possible effects on exoplanet habitability. Here, we investigate the propagation of Galactic cosmic rays as they travel through the stellar winds (astrospheres) of five nearby M dwarfs, namely: GJ 15A, GJ 273, GJ 338B, GJ 411 and GJ 887. Our selected stars each have 1 or 2 detected exoplanets and they all have wind mass-loss rates constrained by Lyman-alpha observations. Our simulations use a combined 1D magnetohydrodynamic (MHD) Alfvén-wave-driven stellar wind model and 1D cosmic ray transport model. We find that GJ 411 and GJ 887 have Galactic cosmic rays fluxes comparable with Earth's at their habitable zones. On the other hand, GJ 15A, GJ 273 and GJ 338B receive a lower Galactic cosmic ray flux in their habitable zones. All exoplanets in our sample, with exception of GJ 15A c and GJ 411 c, have a significantly lower flux of Galactic cosmic rays than values observed at the Earth because they orbit closer-in. The fluxes found here can be further used for chemical modelling of planetary atmospheres. Finally, we calculate the radiation dose at the surface of the habitable-zone planet GJ 273 b, assuming it has an Earth-like atmosphere. This planet receives up to 209 times less 15 MeV energy cosmic ray fluxes than values observed at Earth. However, for high-energy cosmic rays (~ GeV), the difference in flux is only 2.3 times smaller, which contributes to GJ 273 b receiving a significant surface radiation dose of 0.13 mSv/yr (40% of the annual dose on Earth's surface).
11 pages, 6 figures, accepted for publication in MNRAS
References in corpus (34)
- The James Webb Space Telescope
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- Habitable planets around the star Gl 581?
- The Solar Neighborhood XVII: Parallax Results from the CTIOPI 0.9m Program -- Twenty New Members of the RECONS 10 Parsec Sample
- Large-scale magnetic topologies of late M dwarfs
- Stellar magnetism: empirical trends with age and rotation
- The NASA-UC-UH Eta-Earth Program: IV. A Low-mass Planet Orbiting an M Dwarf 3.6 PC from Earth
- The Mass-Dependence of Angular Momentum Evolution in Sun-Like Stars
- The On/Off Nature of Star-Planet Interactions
- The Solar Neighborhood XXXV: Distances to 1404 M Dwarf Systems Within 25 pc in the Southern Sky
- New Observational Constraints on the Winds of M Dwarf Stars
- Magnetic field strengths of hot Jupiters from signals of star-planet interactions
- The evolution of the solar wind
- Magnetic fields in M dwarfs from the CARMENES survey
- Powerful Winds from Low-Mass Stars: V374 Peg
- Planet-induced radio emission from the coronae of M dwarfs: the case of Prox Cen and AU Mic
- SPIRou Input Catalog: Activity, Rotation and Magnetic Field of Cool Dwarfs
- Exoplanets as probes of the winds of host stars: the case of the M dwarf GJ 436
- Radio emission and mass loss rate limits of four young solar-type stars
- The SOPHIE search for northern extrasolar planets. XIV. A temperate ( K) super-earth around the nearby star Gliese 411
- A multiple planet system of super-Earths orbiting the brightest red dwarf star GJ887
- The ionising effect of low energy cosmic rays from a class II object on its protoplanetary disk
- On the Diversity of M-Star Astrospheres and the Role of Galactic Cosmic Rays Within
- Stellar energetic particles in the magnetically turbulent habitable zones of TRAPPIST-1-like planetary systems
- Stellar versus Galactic: The intensity of cosmic rays at the evolving Earth and young exoplanets around Sun-like stars
- Ariel: Enabling planetary science across light-years
- Stellar Proton Event-induced surface radiation dose as a constraint on the habitability of terrestrial exoplanets
- Transit Ly- signatures of terrestrial planets in the habitable zones of M dwarfs
- The Earth-like Galactic cosmic ray intensity in the habitable zone of the M dwarf GJ 436
- Galactic cosmic ray hydrogen spectra and radial gradients in the inner heliosphere measured by the HELIOS Experiment 6
- Can a cosmic ray carrot explain the ionization level in diffuse molecular clouds?
- Charting nearby stellar systems: The intensity of Galactic cosmic rays for a sample of solar-type stars
- Modeling Solar Proton Event-induced Martian Surface Radiation Dose
- The California Legacy Survey I. A Catalog of 178 Planets from Precision Radial Velocity Monitoring of 719 Nearby Stars over Three Decades