Plasma Heating Induced by Tadpole-Like Downflows in the Flaring Solar Corona
arXiv:2103.14257 · doi:10.1016/j.xinn.2021.100083
Abstract
As one of the most spectacular energy release events in the solar system, solar flares are generally powered by magnetic reconnection in the solar corona. As a result of the re-arrangement of magnetic field topology after the reconnection process, a series of new loop-like magnetic structures are often formed and are known as flare loops. A hot diffuse region, consisting of around 5-10 MK plasma, is also observed above the loops and is called a supra-arcade fan. Often, dark, tadpole-like structures are seen to descend through the bright supra-arcade fans. It remains unclear what role these so-called supra-arcade downflows (SADs) play in heating the flaring coronal plasma. Here we show a unique flare observation, where many SADs collide with the flare loops and strongly heat the loops to a temperature of 10-20 MK. Several of these interactions generate clear signatures of quasi-periodic enhancement in the full-Sun-integrated soft X-ray emission, providing an alternative interpretation for quasi-periodic pulsations that are commonly observed during solar and stellar flares.
Published in The Innovation; Animations are available in the Journal's Website
References in corpus (12)
- Thermal Diagnostics with the Atmospheric Imaging Assembly onboard the Solar Dynamics Observatory: A Validated Method for Differential Emission Measure Inversions
- Quasi-periodic pulsations in solar and stellar flares: an overview of recent results
- Above-the-loop-top Oscillation and Quasi-periodic Coronal Wave Generation in Solar Flares
- Persistent Quasi-Periodic Pulsations During a Large X-Class Solar Flare
- Magnetic Reconnection During the Post-Impulsive Phase of a Long-Duration Solar Flare: Bi-Directional Outflows as a Cause of Microwave and X-ray Bursts
- A Compact Source for Quasi-Periodic Pulsation in an M-class Solar Flare
- Secondary Rayleigh-Taylor type Instabilities in the Reconnection Exhaust Jet as a Mechanism for Supra-Arcade Downflows
- Thermodynamical Evolution of Supra-Arcade Downflows
- Exploring Plasma Heating in the Current Sheet Region in a Three-Dimensional Coronal Mass Ejection Simulation
- Quasi-periodic pulsations with multiple periods in hard X-ray emission
- Evidence for Vortex Shedding in the Sun's Hot Corona
- Thermodynamics of supra-arcade downflows in solar flares
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- Repeating Fast Radio Bursts from Collapses of the Crust of a Strange Star
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- The Solar Upper Transition Region Imager (SUTRI) onboard the SATech-01 satellite
- Probing the Physics of the Solar Atmosphere with the Multi-slit Solar Explorer (MUSE): II. Flares and Eruptions
- Coronal microjets in quiet-Sun regions observed with the Extreme Ultraviolet Imager onboard Solar Orbiter
- Detection of flare multi-periodic pulsations in mid-ultraviolet Balmer continuum, Ly-alpha, hard X-ray, and radio emissions simultaneously
- Three-dimensional Propagation of the Global EUV Wave associated with a solar eruption on 2021 October 28
- Detections of Multi-Periodic Oscillations during a Circular Ribbon Flare
- Formation of solar quiescent coronal loops through magnetic reconnection in an emerging active region
- Investigation on the Spatiotemporal Structures of Supra-Arcade Spikes
- Effects of supra-arcade downflows interacting with the post-flare arcade
- Statistical Investigation of the Kinematic and Thermal Properties of Supra-arcade Downflows Observed During a Solar Flare
- Statistical Investigation of the Widths of Supra-arcade Downflows Observed During a Solar Flare
- Temperature and differential emission measure evolution of a limb flare on 13 January 2015
- Implications for additional plasma heating driving the extreme-ultraviolet late phase of a solar flare with microwave imaging spectroscopy
- SADCat: A Catalog of Supra-Arcade Downflow Events in Solar Flares
- Quasiperiodic Slipping Motion of Flare Ribbon Fine Structures Anchored in a Sunspot Light Bridge