Study of Particle Acceleration using Fine Structures and Oscillations in Microwaves from Electron Cyclotron Maser
Rohit Sharma, Marina Battaglia, Sijie Yu, Bin Chen, Yingjie Luo and, Sam Krucker

TL;DR
This study investigates the fine temporal structures and oscillations in microwave emissions from the electron cyclotron maser during solar flares, revealing insights into electron dynamics and emission mechanisms with high-resolution imaging spectroscopy.
Contribution
It provides a detailed analysis of sub-second variability and QPPs in ECM emissions, constraining electron energies and pitch angles using high-resolution radio and X-ray data.
Findings
QPPs are associated with a 5-second periodicity during solar flares.
ECM emission is constrained to the second harmonic o-mode.
Electron energies are estimated at approximately 4-8 keV.
Abstract
The accelerated electrons during solar flares produce radio bursts and nonthermal X-ray signatures. The quasi-periodic pulsations (QPPs) and fine structures in spatial-spectral-temporal space in radio bursts depend on the emission mechanism and the local conditions, such as magnetic fields, electron density, and pitch angle distribution. Radio burst observations with high frequency-time resolution imaging provide excellent diagnostics. In converging magnetic field geometries, the radio bursts can be produced via the electron-cyclotron maser (ECM). Recently, using observations made by the Karl G. Jansky Very Large Array (VLA) at 1--2 GHz, \cite{Yu2023} reported a discovery of long-lasting auroral-like radio bursts persistent over a sunspot and interpreted them as ECM-generated emission. Here, we investigate the detailed second and sub-second temporal variability of this continuous ECM…
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Taxonomy
TopicsParticle accelerators and beam dynamics · Gyrotron and Vacuum Electronics Research
