Searching for star-planet interactions in GJ 486 at radio wavelengths with the uGMRT
arXiv:2411.17689 · doi:10.1051/0004-6361/202451835
Abstract
We search for radio emission from star-planet interactions in the M-dwarf system GJ~486, which hosts an Earth-like planet. We observed the GJ~486 system with the upgraded Giant Metrewave Radio Telescope (uGMRT) from 550 to 750 MHz in nine different epochs, between October 2021 and February 2022, covering almost all orbital phases of GJ~486 b from different orbital cycles. We obtained radio images and dynamic spectra of the total and circularly polarized intensity for each individual epoch We do not detect any quiescent radio emission in any epoch above 3. Similarly, we do not detect any bursty emission in our dynamic spectra. While we cannot completely rule out that the absence of a radio detection is due to time variability of the radio emission, or to the maximum electron-cyclotron maser emission being below our observing range, this seems unlikely. We discuss two possible scenarios: an intrinsic dim radio signal, or alternatively, that the anisotropic beamed emission pointed away from the observer. If the non-detection of radio emission from star-planet interaction in GJ~486 is due to an intrinsically dim signal, this implies that, independently of whether the planet is magnetized or not, the mass-loss rate is small (\dot{M}_\star 0.3 \dot{M}_\sun) and that, concomitantly, the efficiency of the conversion of Poynting flux into radio emission must be low (). Free-free absorption effects are negligible, given the high value of the coronal temperature. Finally, if the anisotropic beaming pointed away from us, this would imply that GJ~486 has very low values of its magnetic obliquity and inclination.
References in corpus (24)
- The Transiting Exoplanet Survey Satellite
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- CASA, the Common Astronomy Software Applications for Radio Astronomy
- Large-scale magnetic topologies of late M dwarfs
- Magnetism, rotation, and nonthermal emission in cool stars -- Average magnetic field measurements in 292 M dwarfs
- The CARMENES search for exoplanets around M dwarfs -- Planet occurrence rates from a subsample of 71 stars
- Magnetic fields of M dwarfs
- The 10 parsec sample in the Gaia era
- New Observational Constraints on the Winds of M Dwarf Stars
- The search for radio emission from the exoplanetary systems 55 Cancri, Andromedae, and Boötis using LOFAR beam-formed observations
- Stellar Winds on the Main-Sequence I: Wind Model
- Magnetic fields in M dwarfs from the CARMENES survey
- The CARMENES search for exoplanets around M dwarfs. Guaranteed time observations Data Release 1 (2016-2020)
- A nearby transiting rocky exoplanet that is suitable for atmospheric investigation
- CAPTURE: A continuum imaging pipeline for the uGMRT
- SPIRou Input Catalog: Activity, Rotation and Magnetic Field of Cool Dwarfs
- Monitoring the radio emission of Proxima Centauri
- Coherent radio bursts from known M-dwarf planet host YZ Ceti
- A detailed analysis of the Gl 486 planetary system
- Connection between planetary He I 10830 Å absorption and extreme-ultraviolet emission of planet-host stars
- Hunting for exoplanets via magnetic star-planet interactions: geometrical considerations for radio emission
- Determining the beaming of Io decametric emissions : a remote diagnostic to probe the Io-Jupiter interaction
- MHD simulations of the space weather in Proxima b: Habitability conditions and radio emission
- High-energy spectra of LTT 1445A and GJ 486 reveal flares and activity