Magnetic Flux Change and Cancellation Associated with X-class and M-class Flares
arXiv:1210.4200 · doi:10.1007/s11207-013-0241-8
Abstract
We perform a statistical study of permanent changes in longitudinal fields associated with solar flares by tracking magnetic features. The YAFTA feature tracking algorithm is applied to GONG++ one-minute magnetograms for 77 X-class and M-class flares to analyze the evolution and interaction of the magnetic features and to estimate the amount of canceled magnetic flux. We find that significantly more magnetic flux decreases than increases occurred during the flares, consistent with a model of collapsing loop structure for flares. Correlations between both total (unsigned) and net (signed) flux changes and the GOES peak X-ray flux are dominated by X-class flares at limb locations. The flux changes were accompanied in most cases by significant cancellation, most of which occurred during the flares. We find that the field strength and complexity near the polarity inversion line are approximately equally important in the flux cancellation processes that accompany the flares. We do not find a correlation between the flux cancellation events and the stepwise changes in the magnetic flux in the region.
Published in Solar Physics
References in corpus (4)
- Impulsive phase flare energy transport by large-scale Alfven waves and the electron acceleration problem
- Abrupt changes in photospheric magnetic and Lorentz-force vectors during neutral-line flares
- What is the relationship between photospheric flow fields and solar flares?
- A Comparative Study of Magnetic Fields in the Solar Photosphere and Chromosphere at Equatorial and Polar Latitudes
Cited by in corpus (11)
- Flare-productive active regions
- Block-induced complex structures building the flare-productive solar active region 12673
- On the 2012 October 23 circular ribbon flare: emission features and magnetic topology
- Structure and Evolution of Magnetic Fields Associated with Solar Eruptions (Invited Review)
- A Statistical Study of Photospheric Magnetic Field Changes During 75 Solar Flares
- A solar flare driven by thermal conduction observed in mid-infrared
- The Signature of Flare Activity in Multifractal Measurements of Active Regions Observed by SDO/HMI
- Search for a Signature of Twist-Removal in the Magnetic Field of Sunspots in Relation with Major Flares
- Energy Build-up and Triggering Leading to a M1.5 Flare on 1 August 2014
- Energy origination and triggering mechanism of a series of homologous confined flares
- Investigation of a confined C-class flare in an arch filament system close to a regular sunspot