Manifestations of three dimensional magnetic reconnection in an eruption of a quiescent filament: \\ Filament strands turning to flare loops
arXiv:1909.03825 · doi:10.3847/1538-4357/ab4519
Abstract
We report on observations of conversion of bright filament strands into flare loops during 2012 August 31 filament eruption. Prior to the eruption, individual bright strands composing one of the legs of the filament were observed in the 171 A filter channel data of the Atmospheric Imaging Assembly. After the onset of the eruption, one of the hooked ribbons started to propagate and contract, sweeping footpoints of the bright filament strands as well as coronal loops located close by. Later on, hot flare loops appeared in regions swept by the hook, where the filament strands were rooted. Timing and localization of these phenomena suggest that they are caused by reconnection of field lines composing the filament at the hook, which, to our knowledge, has not been observed before. This process is not included in the standard flare model (CSHKP), as it does not address footpoints of erupting flux ropes and ribbon hooks. It has, however, been predicted using the recent three-dimensional extensions to the standard flare model. There, the erupting flux rope can reconnect with surrounding coronal arcades as the hooked extensions of current ribbons sweep its footpoints. This process results in formation of flare loops rooted in previous footpoints of the flux rope. Our observations of sweeping of filament footpoints are well described by this scenario. In all observed cases, all of the footpoints of the erupting filament became footpoints of flare loops. This process was observed to last for about 150 minutes, throughout the whole eruption.
The Astrophysical Journal, accepted
References in corpus (13)
- Torus instability
- Multi-scale Gaussian normalization for solar image processing
- Quasi-periodic Slipping Magnetic Reconnection During an X-class Solar Flare Observed by the Solar Dynamics Observatory and Interface Region Imaging Spectrograph
- Drifting of the line-tied footpoints of CME flux-ropes
- Statistics of coronal dimmings associated with coronal mass ejections. I. Characteristic dimming properties and flare association
- 3D magnetic reconnection and its application to solar flares
- Two Episodes of Magnetic Reconnections During a Confined Circular-ribbon Flare
- Slipping Magnetic Reconnection Triggering a Solar Eruption of a Triangle-flag Flux Rope
- Witnessing a Large-scale Slipping Magnetic Reconnection along a Dimming Channel during a Solar Flare
- Observations of a Footpoint Drift of an Erupting Flux Rope
- Reconstruction of a helical prominence in 3D from IRIS spectra and images
- Velocities of flare kernels and the mapping norm of field line connectivity
- Exploration of long-period oscillations in an H prominence
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- External reconnection and resultant reconfiguration of overlying magnetic fields during sympathetic eruptions of two filaments
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- Imaging evidence for solar wind outflows originating from a CME footpoint
- Filament Eruption Driving EUV Loop Contraction then Expansion above a Stable Filament
- Saddle-shaped solar flare arcades
- The Causes of Peripheral Coronal Loop Contraction and Disappearance Revealed in a Magnetohydrodynamic Simulation of Solar Eruption
- Filament Leg--Leg Reconnection as a Source of Prominent Supra-Arcade Downflows