Radio Spectral Imaging of an M8.4 Eruptive Solar Flare: Possible Evidence of a Termination Shock
arXiv:2102.06259 · doi:10.3847/1538-4357/abe5a4
Abstract
Solar flare termination shocks have been suggested as one of the viable mechanisms for accelerating electrons and ions to high energies. Observational evidence of such shocks, however, remains rare. Using radio dynamic spectroscopic imaging of a long-duration C1.9 flare obtained by the Karl G. Jansky Very Large Array (VLA), Chen et al. (2015) suggested that a type of coherent radio bursts, referred to as "stochastic spike bursts," were radio signatures of nonthermal electrons interacting with myriad density fluctuations at the front of a flare termination shock. Here we report another stochastic spike burst event recorded during the extended energy release phase of a long-duration M8.4-class eruptive flare on 2012 March 10. VLA radio spectroscopic imaging of the spikes in 1.0--1.6 GHz shows that similar to the case of Chen et al. (2015), the burst centroids form an extended, ~10''-long structure in the corona. By combining extreme-ultraviolet imaging observations of the flare from two vantage points with hard X-ray and ultraviolet observations of the flare ribbon brightenings, we reconstruct the flare arcade in three dimensions. The results show that the spike source is located at ~60 Mm above the flare arcade, where a diffuse supra-arcade fan and multitudes of plasma downflows are present. Although the flare arcade and ribbons seen during the impulsive phase do not allow us to clearly understand how the observed spike source location is connected to the flare geometry, the cooling flare arcade observed two hours later suggests that the spikes are located in the above-the-loop-top region, where a termination shock presumably forms.
23 pages, 13 figures, published by The Astrophysical Journal
References in corpus (23)
- Measurement of magnetic field and relativistic electrons along a solar flare current sheet
- Above-the-loop-top Oscillation and Quasi-periodic Coronal Wave Generation in Solar Flares
- On the Relationship Between a Hot-channel-like Solar Magnetic Flux Rope and its embedded Prominence
- Magnetohydrodynamic shocks in and above post-flare loops: two-dimensional simulation and a simplified model
- 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
- Microwave Spectral Imaging of an Erupting Magnetic Flux Rope: Implications for the Standard Solar Flare Model in Three Dimensions
- Quasi-periodic oscillations in flares and coronal mass ejections associated with magnetic reconnection
- The Acceleration and Confinement of Energetic Electrons by a Termination Shock in a Magnetic Trap: An Explanation for Nonthermal Loop-top Sources during Solar Flares
- Propagation of the 2012 March Coronal Mass Ejections from the Sun to Heliopause
- Hot Plasma Flows and Oscillations in the Loop-top Region During the September 10 2017 X8.2 Solar Flare
- An exploration of heating mechanisms in a supra-arcade plasma sheet formed after a coronal mass ejection
- Direct Evidence of an Eruptive, Filament-Hosting Magnetic Flux Rope Leading to a Fast Solar Coronal Mass Ejection
- 4D Data Cubes from Radio-Interferometric Spectroscopic Snapshot Imaging
- Particle-in-cell simulations of particle energization via shock drift acceleration from low Mach number quasi-perpendicular shocks in solar flares
- Radio Spectroscopic Imaging of a Solar Flare Termination Shock: Split-Band Feature as Evidence for Shock Compression
- Recurring Homologous Solar Eruptions in NOAA AR 11429
- Possible Detection of Subsecond-period Propagating Magnetohydrodynamics Waves in Post-reconnection Magnetic Loops during a Two-ribbon Solar Flare
- Dynamical modulation of solar flare electron acceleration due to plasmoid-shock interactions in the looptop region
- Solar Fast Drifting Radio Bursts in an X1.3 Flare on 2014 April 25
- Dynamic Spectral Imaging of Decimetric Fiber Bursts in an Eruptive Solar Flare
- Radio and X-ray Observations of Short-lived Episodes of Electron Acceleration in a Solar Microflare
- Sunspots rotation and magnetic transients associated with flares in NOAA AR 11429
- Termination shock as a source of unusual solar radio bursts
Cited by in corpus (11)
- Probing the Physics of the Solar Atmosphere with the Multi-slit Solar Explorer (MUSE): II. Flares and Eruptions
- Numerical Modeling of Energetic Electron Acceleration, Transport, and Emission in Solar Flares: Connecting Loop-top and Footpoint Hard X-Ray Sources
- Detection of weak ubiquitous impulsive nonthermal emissions from the solar corona
- First Frequency-Time-Resolved Imaging Spectroscopy Observations of Solar Radio Spikes
- A model of double coronal hard X-ray sources in solar flares
- Multiple electron acceleration instances during a series of solar microflares observed simultaneously at X-rays and microwaves
- Statistical Investigation of the Widths of Supra-arcade Downflows Observed During a Solar Flare
- Stochastic Electron Acceleration by Temperature Anisotropy Instabilities Under Solar Flare Plasma Conditions
- First Detailed MeerKAT Imaging Spectroscopy of a Solar Flare
- Energy-Containing Electrons in Solar Flares: Improving Hard X-Ray and EUV Diagnostics
- Narrowband spikes observed during the 13 June 2012 flare in the 800-2000 MHz range