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A weak coronal heating event associated with periodic particle acceleration episodes

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arxiv 1902.10426 v6 pith:LN2ACXDM submitted 2019-02-27 astro-ph.SR

classification astro-ph.SR
keywords radioweakobservationseventsheatingimagingmagneticartb
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Weak heating events are frequent and ubiquitous in solar corona. They derive their energy from the local magnetic field and form a major source of local heating, signatures of which are seen in EUV and X-ray bands. Their radio emission arise from various plasma instabilities that lead to coherent radiation, making even a weak flare appear very bright. The radio observations hence probe non-equilibrium dynamics providing complementary information on plasma evolution. However, a robust study of radio emission from a weak event among many simultaneous events, requires high dynamic range imaging at sub-second andsub-MHz resolutions owing to their high spectro-temporal variability. Such observations were not possible until recently.This is among the first spatially resolved studies of an active region loop hosting a transient brightening (ARTB) and dynamically linked to a metrewave type-I noise storm. It uses imaging observations at metrewave, EUV and X-ray bands, along with magnetogram data. We believe this is the first spectroscopic radio imaging study of a type-I source, the data for which was obtained using the Murchison Widefield Array. We report the discovery of 30 s quasi-periodic oscillations (QPOs) in the radio light curve, riding on a coherent baseline flux. The strength of the QPOs and the baseline flux enhanced during a mircoflare associated with the ARTB. Our observations suggest a scenario where magnetic stress builds up over an Alfv\'{e}n timescale (30s) across the typical magnetic field braiding scale and then dissipates via a cascade of weak reconnection events.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. First monitoring campaign of a Main-sequence Radio Pulse emitter: the case of CU Vir

    astro-ph.SR 2026-08 conditional novelty 7.0 of 10

    A six-month, 36-epoch radio campaign on CU Vir shows the leading pulse fluctuates more than the trailing pulse, reveals arrival-phase jitter, and refines the rotation period to 0.5206882 days.

  2. The Study of Quasi-Periodic Pulsations in Solar and Stellar Flares with SKA

    astro-ph.SR 2026-07 accept novelty 3.0 of 10

    SKA’s radio imaging spectroscopy and polarisation will enable decisive tests of QPP mechanisms in solar and stellar flares, including weak events and solar–stellar comparisons.

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