Location and energy of electrons producing the radio bursts from AD Leo observed by FAST in December 2021
arXiv:2501.16180 · doi:10.1051/0004-6361/202450950
Abstract
In a recent paper, we presented circularly polarized radio bursts detected by the radio telescope FAST from the flare star AD Leo on December 2-3, 2021, which were attributed to the electron cyclotron maser instability. In that context we use here two independent and complementary approaches\pz{, inspired from the study of auroral radio emissions from solar system planets,} to constrain for the first time the source location (magnetic shell, height) and the energy of the emitting electrons. These two approaches consist of (i) modeling the overall occurrence of the emission with the ExPRES code, and (ii) fitting the drift-rate of the fine structures observed by FAST. We obtain consistent results pointing at 20-30 keV electrons on magnetic shells with apex at 2-10 stellar radii. Emission polarization observed by FAST and magnetic topology of AD Leo favour X-mode emission from the southern magnetic hemisphere, from which we draw constraints on the plasma density scale height in the star's atmosphere. We demonstrate that sensitive radio observations with high time-frequency resolutions, coupled to modelling tools such as ExPRES, analytical calculations and stellar magnetic field measurements, now allow us to remotely probe stellar radio environments.} We provide elements of comparison with solar system radio bursts (Jovian and Solar), emit hypotheses about the driver of AD Leo's radio bursts and discuss the perspectives of future observations, in particular at very low frequencies (<100 MHz).
21 pages, 14 figures
References in corpus (16)
- The Five-Hundred-Meter Aperture Spherical Radio Telescope (FAST) Project
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- The Fundamental Performance of FAST with 19-beam Receiver at L Band
- Gaia Early Data Release 3: The Gaia Catalogue of Nearby Stars
- Ultra-high-time Resolution Observations of Radio Bursts on AD Leonis
- Optical and X-ray observations of stellar flares on an active M dwarf AD Leonis with Seimei Telescope, SCAT, NICER and OISTER
- The GAPS Programme at TNG XXI -- A GIARPS case-study of known young planetary candidates: confirmation of HD 285507 b and refutation of AD Leo b
- High-resolution spectroscopy of flares and CMES on AD Leo*
- Variable emission mechanism of a Type IV radio burst
- AD Leonis: Flares observed by XMM-Newton and Chandra
- The CARMENES search for exoplanets around M dwarfs: Stable radial-velocity variations at the rotation period of AD~Leonis -- A test case study of current limitations to treating stellar activity
- Monitoring the large-scale magnetic field of AD~Leo with SPIRou, ESPaDOnS and Narval. Toward a magnetic polarity reversal?
- Auroral Radio Emission from Ultracool Dwarfs: a Jovian Model
- Fine structures of radio bursts from flare star AD Leo with FAST observations
- Energetic particle activity in AD Leo: Detection of a solar-like type-IV burst
- On the mechanism of polarised metrewave stellar emission