Rapid Changes of Photospheric Magnetic Field after Tether-Cutting Reconnection and Magnetic Implosion
arXiv:1112.3598 · doi:10.1088/2041-8205/745/1/L4
Abstract
The rapid, irreversible change of the photospheric magnetic field has been recognized as an important element of the solar flare process. This Letter reports such a rapid change of magnetic fields during the 2011 February 13 M6.6 flare in NOAA AR 11158 that we found from the vector magnetograms of the Helioseismic and Magnetic Imager with 12-min cadence. High-resolution magnetograms of Hinode that are available at ~-5.5, -1.5, 1.5, and 4 hrs relative to the flare maximum are used to reconstruct three-dimensional coronal magnetic field under the nonlinear force-free field (NLFFF) assumption. UV and hard X-ray images are also used to illuminate the magnetic field evolution and energy release. The rapid change is mainly detected by HMI in a compact region lying in the center of the magnetic sigmoid, where the mean horizontal field strength exhibited a significant increase by 28%. The region lies between the initial strong UV and hard X-ray sources in the chromosphere, which are cospatial with the central feet of the sigmoid according to the NLFFF model. The NLFFF model further shows that strong coronal currents are concentrated immediately above the region, and that more intriguingly, the coronal current system underwent an apparent downward collapse after the sigmoid eruption. These results are discussed in favor of both the tether-cutting reconnection producing the flare and the ensuing implosion of the coronal field resulting from the energy release.
7 pages, 5 figures, accepted to the Astrophysical Journal Letters
References in corpus (6)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- 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
- Tracking Vector Magnetograms with the Magnetic Induction Equation
- Sigmoid-to-Flux-Rope Transition Leading to A Loop-Like Coronal Mass Ejection
- Coronal Implosion and Particle Acceleration in the Wake of a Filament Eruption
Cited by in corpus (61)
- Flare-productive active regions
- Solar filament eruptions and their physical role in triggering Coronal Mass Ejections
- Formation and Eruption of an Active Region Sigmoid: I. Study by Nonlinear Force-Free Field Modeling
- Interpreting Eruptive Behavior in NOAA AR 11158 via the Region's Magnetic Energy and Relative Helicity Budgets
- Abrupt changes in photospheric magnetic and Lorentz-force vectors during neutral-line flares
- Magnetohydrodynamic Simulation of the X2.2 Solar Flare on 2011 February 15: I. Comparison with the Observations
- Evidence for collapsing fields in corona and photosphere during the 15 February 2011 X2.2 flare: SDO AIA and HMI Observations
- The Role of Erupting Sigmoid in Triggering a Flare with Parallel and Large-Scale Quasi-Circular Ribbons
- Study on Triggering Process of Solar Flares Based on Hinode/SOT Observations
- Direct Observations of Tether-cutting Reconnection During a Major Solar Event From 2014 February 24 to 25
- Numerical Simulations of Flare-productive Active Regions: delta-sunspots, Sheared Polarity Inversion Lines, Energy Storage, and Predictions
- A spatio-temporal description of the abrupt changes in the photospheric magnetic and Lorentz-force vectors during the 2011 February 15 X2.2 flare
- Evidence for Solar Tether-cutting Magnetic Reconnection from Coronal Field Extrapolations
- The Relationship between the Sudden Change of the Lorentz Force and the Magnitude of Associated Flares
- Magnetic Structure Producing X- and M-Class Solar Flares in Solar Active Region 11158
- Structure and Evolution of Magnetic Fields Associated with Solar Eruptions (Invited Review)
- Temporal Evolution of the Magnetic Topology of the NOAA Active Region 11158
- Magnetic Systems Triggering the M6.6-class Solar Flare in NOAA Active Region 11158
- Formation of a Flare-Productive Active Region: Observation and Numerical Simulation of NOAA AR 11158
- Flare differentially rotates sunspot on Sun's surface
- Photospheric Electric Fields and Energy Fluxes in the Eruptive Active Region NOAA 11158
- Sudden Photospheric Motion and Sunspot Rotation Associated with the X2.2 Flare on 2011 February 15
- A solar eruption driven by rapid sunspot rotation
- On the Characteristics of Footpoints of Solar Magnetic Flux Ropes during the Eruption
- The Magnetic Field of Active Region 11158 During the 2011 February 12-17 Flares : Differences between Photospheric Extrapolation and Coronal Forward-Fitting Methods
- Three-dimensional Magnetic Restructuring in Two Homologous Solar Flares in the Seismically Active NOAA AR 11283
- The Vertical Current Approximation Nonlinear Force-Free Field Code - Description, Performance Tests, and Measurements of Magnetic Energies Dissipated in Solar Flares
- Magnetic Field Restructuring Associated with Two Successive Solar Eruptions
- A Statistical Study of Photospheric Magnetic Field Changes During 75 Solar Flares
- Onset of a Large Ejective Solar Eruption from a Typical Coronal-Jet-Base Field Configuration
- An Eruptive Circular-ribbon Flare with Extended Remote Brightenings
- Contracting and Erupting Components of Sigmoidal Active Regions
- When do solar erupting hot magnetic flux ropes form?
- A comparative study between a failed and a successful eruption initiated from the same polarity inversion line in AR 11387
- Evolution of Photospheric Vector Magnetic Field Associated with Moving Flare Ribbons As Seen By GST
- Flare reconnection-driven magnetic field and Lorentz force variations at the Sun's surface
- Comparison between Hinode/SOT and SDO/HMI, AIA Data for the Study of the Solar Flare Trigger Process
- Magnetic Field Modeling of hot channels in Four Flare/CME Events
- Flares and Magnetic Non-potentiality of NOAA AR 11158
- Study of Rapid Formation of a Delta Sunspot Associated with the 2012 July 2 C7.4 Flare Using High-resolution Observations of New Solar Telescope
- Evolution of Photospheric Flow and Magnetic Fields Associated with The 2015 June 22 M6.5 Flare
- Transient rotation of photospheric vector magnetic fields associated with a solar flare
- On the relationship between sunspot structure and magnetic field changes associated with solar flares
- Abrupt Longitudinal Magnetic Field Changes and Ultraviolet Emissions Accompanying Solar Flares
- A Study of Magnetic Field Characteristics of Flaring Active Region Based on Nonlinear Force-free Field Extrapolation
- Relative field line helicity of a large eruptive solar active region
- Estimating Flare-related Photospheric Lorentz Force Vector Changes within Active Regions
- A Comparative Study of Solar Active Region 12371 with Data-constrained and Data-driven MHD Simulations
- Eruptions and Flaring Activity in Emerging Quadrupolar Regions
- A Survey of Changes in Magnetic Helicity Flux on the Photosphere During Relatively Low Class Flares
- Flux emergence and generation of flare-productive active regions
- Sunspots rotation and magnetic transients associated with flares in NOAA AR 11429
- Sequential Lid Removal in a Triple-Decker Chain of CME-Producing Solar Eruptions
- Electric Currents through J-shaped and Non-J-shaped Flare Ribbons
- On the nature of photospheric horizontal magnetic field increase in major solar flares
- Analysis of a long-duration AR throughout five solar rotations: Magnetic properties and ejective events
- A Data-constrained Magnetohydrodynamic Simulation of Successive X-class Flares in Solar Active Region 13842. II. Dynamics of the Solar Eruption Associated with the X9.0 Solar Flare
- Magnetic imprints of eruptive and non-eruptive Solar flares as observed by Solar Dynamics Observatory
- How flux feeding causes eruptions of solar magnetic flux ropes with the hyperbolic flux tube configuration?
- Search for a Signature of Twist-Removal in the Magnetic Field of Sunspots in Relation with Major Flares
- Chirality and magnetic configuration associated with two-ribbon solar flares: AR 10930 versus AR 11158