The Detectability of Radio Auroral Emission from Proxima B
arXiv:1706.07038 · doi:10.3847/2041-8213/aa9112
Abstract
Magnetically active stars possess stellar winds whose interaction with planetary magnetic fields produces radio auroral emission. We examine the detectability of radio auroral emission from Proxima b, the closest known exosolar planet orbiting our nearest neighboring star, Proxima Centauri. Using the Radiometric Bode's Law, we estimate the radio flux produced by the interaction of Proxima Centauri's stellar wind and Proxima b's magnetosphere for different planetary magnetic field strengths. For plausible planetary masses, Proxima b produces 6-83 mJy of auroral radio flux at frequencies of 0.3-0.8 MHz for planetary magnetic field strengths of 1-3 B. According to recent MHD models that vary the orbital parameters of the system, this emission is expected to be highly variable. This variability is due to large fluctuations in the size of Proxima b's magnetosphere as it crosses the equatorial streamer regions of the dense stellar wind and high dynamic pressure. Using the MHD model of Garraffo et al. 2016 for the variation of the magnetosphere radius during the orbit, we estimate that the observed radio flux can vary nearly by an order of magnitude over the 11.2 day period of Proxima b. The detailed amplitude variation depends on the stellar wind, orbital, and planetary magnetic field parameters. We discuss observing strategies for proposed future space-based observatories to reach frequencies below the ionospheric cut off ( MHz) as would be required to detect the signal we investigate.
Submitted to ApJL, comments welcome
References in corpus (13)
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- Kepler Flares I. Active and Inactive M dwarfs
- The Kepler Catalog of Stellar Flares
- The On/Off Nature of Star-Planet Interactions
- The habitability of Proxima Centauri b II. Possible climates and Observability
- Early UV Ingress in WASP-12b: Measuring Planetary Magnetic Fields
- Predicting low-frequency radio fluxes of known extrasolar planets
- Magnetic moment and plasma environment of HD 209458b as determined from Ly observations
- The Space Weather of Proxima Centauri b
- Prospects for Characterizing the Atmosphere of Proxima Centauri b
- The Pale Green Dot: A Method to Characterize Proxima Centauri b using Exo-Aurorae
- Radio emission in Mercury magnetosphere
- Extrasolar giant magnetospheric response to steady-state stellar wind pressure at 10, 5, 1, and 0.2 AU
Cited by in corpus (6)
- Atmospheric Escape Processes and Planetary Atmospheric Evolution
- 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
- Can we detect aurora in exoplanets orbiting M dwarfs?
- Winds in Star Clusters Drive Kolmogorov Turbulence
- No Massive Companion to the Coherent Radio-Emitting M Dwarf GJ 1151
- Exoplanet Radio Transits as a Probe for Exoplanetary Magnetic Fields -- Time-dependent MHD Simulations