Energetic particle activity in AD Leo: Detection of a solar-like type-IV burst
arXiv:2402.00185 · doi:10.1051/0004-6361/202347924
Abstract
AD Leo is a young and active M dwarf with high flaring rates across the X-ray to radio bands. Flares accelerate particles in the outer coronal layers and often impact exospace weather. Wide-band radio dynamic spectra let us explore the evolution of particle acceleration activity across the corona. Identifying the emission features and modelling the mechanisms can provide insights into the possible physical scenarios driving the particle acceleration processes. We performed an 8 h monitoring of AD Leo across the 550 - 850 MHz band using upgraded-Giant Metrewave Radio Telescope (uGMRT). A python routine, named VISAD, was built to obtain the visibility averaged wide-band dynamic spectra. Direct imaging was also performed. Based on existing observational results on AD Leo and on solar active region models, radial profiles of electron density and magnetic fields were derived. Applying these models, we explore the possible emission mechanisms and magnetic field structure of the active region. The star displayed high brightness temperature ( K) throughout the observation with nearly 100% left circularly polarised bursts. Post flare phase is characterised by a highly polarised (60 - 80%) solar-like type IV burst confined above 700 MHz.The flare emission favors a Z-mode or a higher harmonic X-mode electron cyclotron maser emission mechanism. The post-flare activity above 700 MHz is consistent with a type-IV radio burst from flare-accelerated particles trapped in magnetic loops, which could be a coronal mass ejection (CME) signature. This is the first solar-like type-IV burst reported on a young active M dwarf belonging to a different age - related activity compared to the Sun. We also find that, a multipole expansion model of the active region magnetic field better accounts for the observed radio emission than a solar-like active region profile.
Accepted in A & A
References in corpus (25)
- Array Programming with NumPy
- CASA, the Common Astronomy Software Applications for Radio Astronomy
- Stellar magnetism: empirical trends with age and rotation
- Coherent Emission Mechanisms in Astrophysical Plasmas
- The Stellar CME-flare relation: What do historic observations reveal?
- The formation heights of coronal shocks from 2D density and Alfvén speed maps
- The Metastable Dynamo Model of Stellar Rotational Evolution
- A Flare-Type IV Burst Event from Proxima Centauri and Implications for Space Weather
- 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
- Analysis and modeling of high temporal resolution spectroscopic observations of flares on AD Leo
- Variable emission mechanism of a Type IV radio burst
- AD Leonis: Flares observed by XMM-Newton and Chandra
- V-LoTSS: The Circularly-Polarised LOFAR Two-metre Sky Survey
- Stellar coronal mass ejections II. Constraints from spectroscopic observations
- Monitoring the large-scale magnetic field of AD~Leo with SPIRou, ESPaDOnS and Narval. Toward a magnetic polarity reversal?
- Fine structures of radio bursts from flare star AD Leo with FAST observations
- A type II solar radio burst without a coronal mass ejection
- On the occurrence of type IV solar radio bursts in the solar cycle 24 and their association with coronal mass ejections
- Sub-second time evolution of Type III solar radio burst sources at fundamental and harmonic frequencies
- Three-dimensional magnetohydrodynamic simulations of M-dwarf chromospheres
- Characterising coronal turbulence using snapshot imaging of radio bursts in 80-200 MHz
- Measuring stellar magnetic helicity density
- The Galaxy in circular polarization: all-sky radio prediction, detection strategy, and the charge of the leptonic cosmic rays
- Harmonic maser emissions from electrons with loss-cone distribution in solar active regions
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- Location and energy of electrons producing the radio bursts from AD Leo observed by FAST in December 2021
- Inter-planetary type-IV solar radio bursts: A comprehensive catalog and statistical results
- Do Young Suns Produce Frequent, Massive CMEs? Results from Five-year Dedicated Optical Observations of EK Draconis and V889 Hercules
- Starspots as the origin of ultrafast drifting radio bursts from an active M dwarf
- Novel scaling laws to derive spatially resolved flare and CME parameters from sun-as-a-star observables
- Solar Particle Acceleration
- Modelling gyrosynchrotron emission from coronal energetic electrons in a CME flux rope
- Role of non-thermal processes in the quiescent and active millimeter spectrum of a young M dwarf