Two-step evolution of a rising flux rope resulting in a confined solar flare
arXiv:1905.00808 · doi:10.3847/1538-4357/ab1f67
Abstract
Combining the Solar Dynamics Observatory and the New Vacuum Solar Telescope observations, we study a confined flare triggered by a rising flux rope within the trailing sunspots of active region 12733. The flux rope lying above the sheared polarity inversion line can be constructed through magnetic extrapolation but could not be detected in multi-wavelength images at the pre-flare stage. The conspicuous shearing motions between the opposite-polarity fields in the photosphere are considered to be responsible for the flux rope formation. The maximum twist of the flux rope is as high as -1.76, and then the flux rope rises due to the kink instability. Only when the flare starts can the flux rope be observed in high-temperature wavelengths. The differential emission measure results confirm that this flux rope is a high-temperature structure. Associated with the rising flux rope, there appear many post-flare loops and a pair of flare ribbons. When the rising flux rope meets and reconnects with the large-scale overlying field lines, a set of large-scale twisted loops are formed, and two flare ribbons propagating in opposite directions appear on the outskirts of the former ribbons, indicating that the twist of the flux rope is transferred to a much larger system. These results imply that the external reconnection between the rising flux rope and the large-scale overlying loops plays an important role in the confined flare formation.
Accepted for publication in ApJ
References in corpus (12)
- Optimization code with weighting function for the reconstruction of coronal magnetic fields
- Preprocessing of vector magnetograph data for a non-linear force-free magnetic field reconstruction
- Observation of An Evolving Magnetic Flux Rope Prior To and During A Solar Eruption
- Thermal Diagnostics with the Atmospheric Imaging Assembly onboard the Solar Dynamics Observatory: A Validated Method for Differential Emission Measure Inversions
- Driving major solar flares and eruptions: a review
- Imaging and spectroscopic observations of magnetic reconnection and chromospheric evaporation in a solar flare
- Block-induced complex structures building the flare-productive solar active region 12673
- Magnetic reconnection between small-scale loops observed with the New Vacuum Solar Telescope
- New Vacuum Solar Telescope observations of a flux rope tracked by a filament activation
- Why is a flare-rich active region CME-poor?
- Fine Structures and Overlying Loops of Confined Solar Flares
- Slipping Magnetic Reconnection Triggering a Solar Eruption of a Triangle-flag Flux Rope
Cited by in corpus (8)
- Observational Analysis on the Early Evolution of a CME Flux-rope: Pre-flare reconnection and Flux-rope's Footpoint Drift
- External reconnection and resultant reconfiguration of overlying magnetic fields during sympathetic eruptions of two filaments
- Partial Eruption, Confinement, and Twist Buildup and Release of a Double-decker Filament
- The high helium abundance and charge states of the interplanetary CME and its material source on the Sun
- The Kinematic Evolution of Erupting Structures in Confined Solar Flares
- Remote coronal dimmings related to a circular-ribbon flare
- The deformation of an erupting magnetic flux rope in a confined solar flare
- Observational study of the formation of homologous confined circular-ribbon flares