CALCULATING ENERGY STORAGE DUE TO TOPOLOGICAL CHANGES IN EMERGING ACTIVE REGION NOAA AR 11112

被引:11
作者
Tarr, Lucas [1 ]
Longcope, Dana [1 ]
机构
[1] Montana State Univ, Dept Phys, Bozeman, MT 59717 USA
关键词
Sun: corona; Sun: evolution; Sun: flares; Sun: magnetic topology; Sun: photosphere; Sun: surface magnetism; MINIMUM CURRENT CORONA; FLUX ROPE HELICITY; CURRENT SHEETS; MAGNETIC-FIELDS; FLARE ENERGETICS; SUNSPOT ROTATION; SOLAR CORONA; NULL POINTS; RECONNECTION; MODEL;
D O I
10.1088/0004-637X/749/1/64
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The minimum current corona model provides a way to estimate stored coronal energy using the number of field lines connecting regions of positive and negative photospheric flux. This information is quantified by the net flux connecting pairs of opposing regions in a connectivity matrix. Changes in the coronal magnetic field, due to processes such as magnetic reconnection, manifest themselves as changes in the connectivity matrix. However, the connectivity matrix will also change when flux sources emerge or submerge through the photosphere, as often happens in active regions. We have developed an algorithm to estimate the changes in flux due to emergence and submergence of magnetic flux sources. These estimated changes must be accounted for in order to quantify storage and release of magnetic energy in the corona. To perform this calculation over extended periods of time, we must additionally have a consistently labeled connectivity matrix over the entire observational time span. We have therefore developed an automated tracking algorithm to generate a consistent connectivity matrix as the photospheric source regions evolve over time. We have applied this method to NOAA Active Region 11112, which underwent a GOES M2.9 class flare around 19: 00 on 2010 October 16th, and calculated a lower bound on the free magnetic energy buildup of similar to 8.25 x 10(30) erg over 3 days.
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页数:16
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