Estimating Flare-Related Photospheric Lorentz Force Vector Changes Within Active Regions

被引:14
作者
Petrie, G. J. D. [1 ]
机构
[1] Natl Solar Observ, Tucson, AZ 85719 USA
关键词
Active regions; magnetic fields; Flares; dynamics; relation to magnetic field; Magnetic fields; photosphere; CORONAL MAGNETIC-FIELD; 2011; FEBRUARY; 15; SOLAR-FLARES; RAPID CHANGES; X2.2; FLARE; TRANSIENTS; ENERGY; LINES;
D O I
10.1007/s11207-014-0545-3
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
It is shown that expressions for the global Lorentz force associated with a flaring active region derived by Fisher et al. (Solar Phys. 277, 59, 2012) can be used to estimate the Lorentz-force changes for strong fields in large structures over photospheric subdomains within active regions. Gary's (Solar Phys. 203, 71, 2001) model for the stratified solar atmosphere is used to demonstrate that in large-scale structures with typical horizontal magnetic length scale >= 300 km and with strong magnetic fields (>= 1 kG at the tau=1 opacity layer at 5000 ), the Lorentz force acting on the photosphere may be approximated by a surface integral based on photospheric boundary data alone. These conditions cover many of the sunspot fields and major neutral lines that have been studied using Fisher et al.'s (2012) expressions over the past few years. The method gives a reasonable estimate of flare-related Lorentz-force changes based on photospheric magnetogram observations provided that the Lorentz-force changes associated with the flare have a lasting effect on the observed fields, and they are not immediately erased by post-flare equilibration processes.
引用
收藏
页码:3663 / 3680
页数:18
相关论文
共 37 条
  • [1] Allen C. W., 1973, ASTROPHYSICAL QUANTI
  • [2] Magneto-Acoustic Energetics Study of the Seismically Active Flare of 15 February 2011
    Alvarado-Gomez, J. D.
    Buitrago-Casas, J. C.
    Martinez-Oliveros, J. C.
    Lindsey, C.
    Hudson, H.
    Calvo-Mozo, B.
    [J]. SOLAR PHYSICS, 2012, 280 (02) : 335 - 345
  • [3] Three-dimensional stereoscopic analysis of solar active region loops.: I.: SOHO EIT observations at temperatures of (1.0-1.5) x 106 K
    Aschwanden, MJ
    Newmark, JS
    Delaboudinière, JP
    Neupert, WM
    Klimchuk, JA
    Gary, GA
    Portier-Fozzani, F
    Zucker, A
    [J]. ASTROPHYSICAL JOURNAL, 1999, 515 (02) : 842 - 867
  • [4] Global Forces in Eruptive Solar Flares: The Lorentz Force Acting on the Solar Atmosphere and the Solar Interior
    Fisher, G. H.
    Bercik, D. J.
    Welsch, B. T.
    Hudson, H. S.
    [J]. SOLAR PHYSICS, 2012, 277 (01) : 59 - 76
  • [5] On the Formation Height of the SDO/HMI Fe 6173 Doppler Signal
    Fleck, B.
    Couvidat, S.
    Straus, T.
    [J]. SOLAR PHYSICS, 2011, 271 (1-2) : 27 - 40
  • [6] Plasma beta above a solar active region: Rethinking the paradigm
    Gary, GA
    [J]. SOLAR PHYSICS, 2001, 203 (01) : 71 - 86
  • [7] Constructing the coronal magnetic field by correlating parameterized magnetic field lines with observed coronal plasma structures
    Gary, GA
    Alexander, D
    [J]. SOLAR PHYSICS, 1999, 186 (1-2) : 123 - 139
  • [8] EVIDENCE FOR COLLAPSING FIELDS IN THE CORONA AND PHOTOSPHERE DURING THE 2011 FEBRUARY 15 X2.2 FLARE: SDO/AIA AND HMI OBSERVATIONS
    Gosain, S.
    [J]. ASTROPHYSICAL JOURNAL, 2012, 749 (01)
  • [9] Harvey J., 1969, PhD thesis
  • [10] Non-force-free extrapolation of solar coronal magnetic field using vector magnetograms
    Hu, Qiang
    Dasgupta, B.
    DeRosa, M. L.
    Buechner, J.
    Gary, G. A.
    [J]. JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2010, 72 (2-3) : 219 - 223