Evolution of Currents of Opposite Signs in the Flare Productive Solar Active Region NOAA 10930
arXiv:1108.5818 · doi:10.1088/0004-637X/740/1/19
Abstract
Analysis of a time series of high spatial resolution vector magnetograms of the active region NOAA 10930 available from SOT/SP on-board Hinode revealed that there is a mixture of upward and downward currents in the two foot-points of an emerging flux-rope. The flux emergence rate is almost the same in both the polarities. We observe that along with an increase in magnetic flux, the net current in each polarity increases initially for about three days after which it decreases. This net current is characterized by having exactly opposite signs in each polarities while its magnitude remains almost the same most of the time. The decrease of net current in both the polarities is due to the increase of current having a sign opposite to that of the net current. The dominant current, with same sign as the net current, is seen to increase first and then decreases during the major X-class flares. Evolution of non-dominant current appears to be a necessary condition for a flare initiation. The above observations can have a plausible explanation in terms of the superposition of two different force-free states resulting in non-zero Lorentz force in the corona. This Lorentz force then push the coronal plasma and might facilitate the magnetic reconnection required for flares. Also, the evolution of the net current is found to follow the evolution of magnetic shear at the polarity inversion line.
24 pages, 6 figures, Submitted to Astrophysical Journal
References in corpus (7)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Non-linear force-free field modeling of a solar active region around the time of a major flare and coronal mass ejection
- Evidence of magnetic field wrapping around penumbral filaments
- Time Evolution of Coronal Magnetic Helicity in the Flaring Active Region NOAA 10930
- The Formation of a Magnetic Channel by the Emergence of Current-carrying Magnetic Fields
- Magnetic Non-Potentiality of Solar Active Regions and Peak X-Ray Flux of the Associated Flares
- Magnetic Tension of Sunspot Fine Structures
Cited by in corpus (27)
- Catastrophe versus instability for the eruption of a toroidal solar magnetic flux rope
- Distribution of Electric Currents in Solar Active Regions
- Non-neutralized Electric Current Patterns in Solar Active Regions: Origin of the Shear-Generating Lorentz Force
- A spatio-temporal description of the abrupt changes in the photospheric magnetic and Lorentz-force vectors during the 2011 February 15 X2.2 flare
- Non-neutralized electric currents in solar active regions and flare productivity
- Buildup and Release of Magnetic Twist during the X3.4 Solar Flare of December 13, 2006
- Electric-Current Neutralization, Magnetic Shear, and Eruptive Activity in Solar Active Regions
- Quasi-Static 3D-Magnetic Field Evolution in Solar Active Region NOAA 11166 Associated with X1.5 Flare
- The origin of net electric currents in solar active regions
- Initiation and Eruption Process of Magnetic Flux Rope from Solar Active Region NOAA 11719 to Earth Directed-CME
- Toward Improved Understanding of Magnetic Fields Participating in Solar Flares: Statistical Analysis of Magnetic Field within Flare Ribbons
- Modeling the initiation of the 2006 December 13 coronal mass ejection in AR 10930: the structure and dynamics of the erupting flux rope
- Flux Emergence in the Solar Active Region NOAA 11158: The Evolution of Net Current
- Magnetic helicity estimations in models and observations of the solar magnetic field. Part IV: Application to solar observations
- Degree of electric current neutralization and the activity in solar Active Regions
- On the flare induced seismicity in the active region NOAA 10930 and related enhancement of global waves in the sun
- Electric current evolution at the footpoints of solar eruptions
- Spectral magnetic helicity of solar active regions between 2006 and 2017
- Solar Active Region Electric Currents Before and During Eruptive Flares
- Distributed Electric Currents in Solar Active Regions
- MHD Simulation of Homologous Eruptions from Solar Active Region 10930 Caused by Sunspot Rotation
- Observational Study of Recurrent Jets: Evolution of Magnetic Flux, Current, and Helicity
- Expulsion of counter Evershed flows from sunspot penumbrae
- Time Series Analysis of Photospheric Magnetic Parameters of Flare-quiet versus Flaring Active Regions: Scaling Properties of Fluctuations
- Non-Neutralized Electric Current of Active Regions Explained as a Projection Effect
- Near-continuous tracking of solar active region NOAA 13664 over three solar rotations
- Fine Magnetic Characteristics of a Light Bridge by Hinode