Unwinding motion of a twisted active-region filament
arXiv:1410.1984 · doi:10.1088/0004-637X/797/1/52
Abstract
To better understand the structures of active-region filaments and the eruption process, we study an active-region filament eruption in active region NOAA 11082 in detail on June 22, 2010. Before the filament eruption, the opposite unidirectional material flows appeared in succession along the spine of the filament. The rising of the filament triggered two B-class flares at the upper part of the filament. As the bright material was injected into the filament from the sites of the flares, the filament exhibited a rapid uplift accompanying the counterclockwise rotation of the filament body. From the expansion of the filament, we can see that the filament is consisted of twisted magnetic field lines. The total twist of the filament is at least 5 obtained by using time slice method. According to the morphology change during the filament eruption, it is found that the active-region filament was a twisted flux rope and its unwinding motion was like a solar tornado. We also find that there was a continuous magnetic helicity injection before and during the filament eruption. It is confirmed that magnetic helicity can be transferred from the photosphere to the filament. Using the extrapolated potential fields, the average decay index of the background magnetic fields over the filament is 0.91. Consequently, these findings imply that the mechanism of solar filament eruption could be due to the kink instability and magnetic helicity accumulation.
26 pages,11 figures, accepted for publication in ApJ
References in corpus (16)
- Torus instability
- Ideal kink instability of a magnetic loop equilibrium
- Tracking Vector Magnetograms with the Magnetic Induction Equation
- Formation of current sheets and sigmoidal structure by the kink instability of a magnetic loop
- Observations and modeling of the early acceleration phase of erupting filaments involved in coronal mass ejections
- Catastrophe versus instability for the eruption of a toroidal solar magnetic flux rope
- Observational evidence of torus instability as trigger mechanism for coronal mass ejections: the 2011 August 4 filament eruption
- New Vacuum Solar Telescope observations of a flux rope tracked by a filament activation
- Solar Magnetized Tornadoes: Rotational Motion in a Tornado-like Prominence
- Homologous Flux Ropes Observed by SDO/AIA
- A solar eruption driven by rapid sunspot rotation
- Breakout and Tether-cutting Eruption Models Are Both Catastrophic (Sometimes)
- Kelvin-Helmholtz instability of twisted magnetic flux tubes in the solar wind
- Kink instability evidenced by analyzing the leg rotation of a filament
- Study of Magnetic Helicity Injection in the Active Regions NOAA 9236 Producing Multiple Flare-associated CME Events
- Fast Magnetic Twister and Plasma Perturbations in a 3-D Coronal Arcade
Cited by in corpus (23)
- Observation and Modeling of Solar Jets
- On a solar blowout jet: driven mechanism and the formation of cool and hot components
- Magnetic Flux Ropes in the Solar Corona: Structure and Evolution toward Eruption
- Some interesting topics provoked by the solar filament research in the past decade
- The formation of an inverse S-shaped active-region filament driven by sunspot motion and magnetic reconnection
- Triggering mechanism and material transfer of a failed solar filament eruption
- The eruption of a small-scale emerging flux rope as the driver of an M-class flare and a coronal mass ejection
- Is flux rope a necessary condition for the progenitor of coronal mass ejections?
- Slipping Magnetic Reconnection of Flux Rope Structures as a Precursor to an Eruptive X-class Solar Flare
- Flux rope proxies and fan-spine structures in active region NOAA 11897
- Direct Observation of A Large-scale CME Flux Rope Event Arising from an Unwinding Coronal Jet
- Dynamics evolution of a solar active-region filament from quasi-static state to eruption: rolling motion, untwisting motion, material transfer, and chirality
- Energy release in driven twisted coronal loops
- Magnetohydrodynamic waves in braided magnetic fields
- Rapid Rotation of an Erupting Prominence and the Associated Coronal Mass Ejection on 13 May 2013
- Failed Solar Eruption of A Multi-thermal Flux Rope
- Untwisting and Disintegration of a Solar Filament Associated with Photospheric Flux Cancellation
- Twisting/Swirling Motions During a Prominence Eruption as seen from SDO/AIA
- Propagating wave in active region-loops, located over the solar disk observed by the Interface Region Imaging Spectrograph
- Spectral Characteristics of a Rotating Solar Prominence in Multiple Wavelengths
- The Observations of Magnetic Reconnection During the Interaction Process of Two Active Region Filaments
- Signatures of Untwisting Magnetic Field in a Small Emerging Bipole in the Solar Photosphere
- Multi-wavelength and Dual-perspective Observations of Eruption and Untwisting of Two Homologous Magnetic Flux Ropes