MHD simulations of the space weather in Proxima b: Habitability conditions and radio emission
arXiv:2405.19116 · doi:10.1051/0004-6361/202349042
Abstract
The habitability of exoplanets hosted by M-dwarf stars dramatically depends on their space weather. We present 3D magneto-hydrodynamic simulations to characterise the magneto-plasma environment and thus the habitability of the Earth-like planet Proxima b when it is subject to both calm and extreme (CME-like) space weather conditions. We study the role of the stellar wind and planetary magnetic field, and determine the radio emission arising from the interaction between the stellar wind of Proxima and the magnetosphere of its planet Proxima b. We find that if Prox b has a magnetic field similar to that of the Earth ( G) or larger, the magnetopause standoff distance is large enough to shield the surface from the stellar wind for essentially any planetary tilt but the most extreme values (close to ), under a calm space weather. Even if Proxima b is subject to more extreme space weather conditions, the planet is well shielded by an Earth-like magnetosphere (; ), or if it has tilt smaller than that of the Earth. For calm space weather conditions, the radio emission caused by the day-side reconnection regions can be as high as 7 erg s in the super-Alfvénic regime, and is on average almost an order of magnitude larger than the radio emission in the sub-Alfvénic cases, due to the much larger contribution of the bow shock. We also find that the energy dissipation at the bow shock is independent of the angle between the planet's magnetic dipole and the incident stellar wind flow. If Prox b is subject to extreme space weather conditions, the radio emission is more than two orders of magnitude larger than under calm space weather conditions. This result yields expectations for a direct detection--from Earth--in radio of giant planets in close-in orbits.
Accepted for publication in A&A (main journal). 14 pages, 8 figures. Videos showcasing the results of the simulation available at https://drive.google.com/drive/u/3/folders/10IJqLHo6DIn769BHb5vEzXxjObi5esL-
References in corpus (26)
- PLUTO: a Numerical Code for Computational Astrophysics
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- The habitability of Proxima Centauri b II. Possible climates and Observability
- The habitability of Proxima Centauri b. I. Irradiation, rotation and volatile inventory from formation to the present
- Tidal Locking of Habitable Exoplanets
- Magnetic Cycles and Rotation Periods of Late Type Stars from photometric time series
- Coherent radio emission from a quiescent red dwarf indicative of star-planet interaction
- The Space Weather of Proxima Centauri b
- Magnetospheric Structure and Atmospheric Joule Heating of Habitable Planets Orbiting M-dwarf Stars
- The search for radio emission from the exoplanetary systems 55 Cancri, Andromedae, and Boötis using LOFAR beam-formed observations
- Planet-induced radio emission from the coronae of M dwarfs: the case of Prox Cen and AU Mic
- A Flare-Type IV Burst Event from Proxima Centauri and Implications for Space Weather
- Monitoring the radio emission of Proxima Centauri
- Coherent radio bursts from known M-dwarf planet host YZ Ceti
- Magnetic cycles in a dynamo simulation of fully convective M-star Proxima Centauri
- The large-scale magnetic field of Proxima Centauri near activity maximum
- The effect of interplanetary magnetic field orientation on the solar wind flux impacting Mercury's surface
- MHD study of planetary magnetospheric response during extreme solar wind conditions: Earth and exoplanet magnetospheres applications
- MHD study of extreme space weather conditions for exoplanets with Earth-like magnetospheres: On habitability conditions and radio-emission
- Radio emission in Mercury magnetosphere
- Revisiting the space weather environment of Proxima Centauri b
- Parametric study of the solar wind interaction with the Hermean magnetosphere for a weak interplanetary magnetic field
- Plasma streams in the Hermean dayside magnetosphere: solar wind injection through the reconnection region
- On Earth's habitability over the Sun's main-sequence history: joint influence of space weather and Earth's magnetic field evolution
- Effect of the interplanetary magnetic field orientation and intensity in the mass and energy deposition on the Hermean surface
- Slow modes in the Hermean magnetosphere: effect of the solar wind hydrodynamic parameters and IMF orientation
Cited by in corpus (7)
- Magnetized winds of M-type stars and star-planet magnetic interactions: uncertainties and modeling strategy
- Searching for star-planet interactions in GJ 486 at radio wavelengths with the uGMRT
- Exo-Geoscience Perspectives Beyond Habitability
- Constraining an exoplanets magnetic field using star-planet interactions
- MHD Simulations Preliminarily Predict The Habitability and Radio Emission of TRAPPIST-1e
- Modeling Atmospheric Ion Escape from Kepler-1649 b and c over Time
- Resistive MHD Simulations of Stellar Wind-Magnetosphere Coupling in TRAPPIST-1e