Evidence for Solar Tether-cutting Magnetic Reconnection from Coronal Field Extrapolations
arXiv:1310.5098 · doi:10.1088/2041-8205/778/2/L36
Abstract
Magnetic reconnection is one of the primary mechanisms for triggering solar eruptive events, but direct observation of its rapid process has been of challenge. In this Letter we present, using a nonlinear force-free field (NLFFF) extrapolation technique, a visualization of field line connectivity changes resulting from tether-cutting reconnection over about 30 minutes during the 2011 February 13 M6.6 flare in NOAA AR 11158. Evidence for the tether-cutting reconnection was first collected through multiwavelength observations and then by the analysis of the field lines traced from positions of four conspicuous flare 1700 A footpoints observed at the event onset. Right before the flare, the four footpoints are located very close to the regions of local maxima of magnetic twist index. Especially, the field lines from the inner two footpoints form two strongly twisted flux bundles (up to ~1.2 turns), which shear past each other and reach out close to the outer two footpoints, respectively. Immediately after the flare, the twist index of regions around the footpoints greatly diminish and the above field lines become low lying and less twisted (~0.6 turns), overarched by loops linking the later formed two flare ribbons. About 10% of the flux (~3x10^19 Mx) from the inner footpoints has undergone a footpoint exchange. This portion of flux originates from the edge regions of the inner footpoints that are brightened first. These rapid changes of magnetic field connectivity inferred from the NLFFF extrapolation are consistent with the tether-cutting magnetic reconnection model.
6 pages, 5 figures, accepted to the Astrophysical Journal Letters
References in corpus (3)
Cited by in corpus (36)
- Flare-productive active regions
- Electric current in flares ribbons: observations and 3D standard model
- Formation and Eruption of an Active Region Sigmoid: I. Study by Nonlinear Force-Free Field Modeling
- Magnetohydrodynamic Simulation of the X2.2 Solar Flare on 2011 February 15: I. Comparison with the Observations
- Structure and Evolution of Magnetic Fields Associated with Solar Eruptions (Invited Review)
- Temporal Evolution of the Magnetic Topology of the NOAA Active Region 11158
- Witnessing tether-cutting reconnection at the onset of a partial eruption
- Sudden Photospheric Motion and Sunspot Rotation Associated with the X2.2 Flare on 2011 February 15
- On the Characteristics of Footpoints of Solar Magnetic Flux Ropes during the Eruption
- Three-dimensional Magnetic Restructuring in Two Homologous Solar Flares in the Seismically Active NOAA AR 11283
- Formation of Compound Flux Rope by The Merging of Two Filament Channels, Associated Dynamics and its Stability
- The Vertical Current Approximation Nonlinear Force-Free Field Code - Description, Performance Tests, and Measurements of Magnetic Energies Dissipated in Solar Flares
- Formation of an active region filament driven by a series of jets
- Observational Analysis on the Early Evolution of a CME Flux-rope: Pre-flare reconnection and Flux-rope's Footpoint Drift
- Onset of a Large Ejective Solar Eruption from a Typical Coronal-Jet-Base Field Configuration
- Generation mechanisms of quasi-parallel and quasi-circular flare ribbons in a confined flare
- A Comparative Study of the Eruptive and Non-Eruptive Flares Produced by the Largest Active Region of Solar Cycle 24
- An Eruptive Circular-ribbon Flare with Extended Remote Brightenings
- Pre-flare processes, flux rope activation, large-scale eruption and associated X-class flare from the active region NOAA 11875
- Formation of a Solar Filament by Magnetic Reconnection and Associated Chromospheric Evaporation and Subsequent Coronal Condensation
- Eruptive-Impulsive Homologous M-class Flares Associated with Double-Decker Flux Rope Configuration in Mini-Sigmoid of NOAA 12673
- Magnetic Field Modeling of hot channels in Four Flare/CME Events
- Statistical analysis of circular-ribbon flares
- A Study of Magnetic Field Characteristics of Flaring Active Region Based on Nonlinear Force-free Field Extrapolation
- Microwave Study of a Solar Circular Ribbon Flare
- Heating and Eruption of a Solar Circular Ribbon Flare
- A Survey of Changes in Magnetic Helicity Flux on the Photosphere During Relatively Low Class Flares
- Flare Energy Release in the Magnetic Field Polarity Inversion Line During M1.2 Solar Flare of March 15, 2015. Paper I. Onset of Plasma Heating and Electrons Acceleration
- A 7~MK hot Flux Rope Observed by SDO/AIA
- Evaluation of Applicability of a Flare Trigger Model based on Comparison of Geometric Structures
- Sequential Lid Removal in a Triple-Decker Chain of CME-Producing Solar Eruptions
- Sigmoid Formation Through Slippage of A Single J-shaped Coronal Loop
- Sunspot shearing and sudden retraction motion associated with the 2013 August 17 M3.3 Flare
- Twin Null-Point-Associated Major Eruptive Three-Ribbon Flares with Unusual Microwave Spectra
- Observational Comparison Between Confined and Eruptive Flares: Magnetohydrodynamics Instability Parameters in a Similar Magnetic Configuration
- Astro2020 Science White Paper: Probing Magnetic Reconnection in Solar Flares - New Perspectives from Radio Dynamic Imaging Spectroscopy