On the injection of helicity by shearing motion of fluxes in relation to Flares and CMEs
arXiv:1202.5195 · doi:10.1088/0004-637X/761/2/86
Abstract
An investigation of helicity injection by photospheric shear motions is carried out for two active regions(ARs), NOAA 11158 and 11166, using line-of-sight magnetic field observations obtained from the Helioseismic and Magnetic Imager on-board Solar Dynamics Observatory. We derived the horizontal velocities in the active regions from the Differential Affine Velocity Estimator(DAVE) technique. Persistent strong shear motions at the maximum velocities in the range of 0.6--0.9km/s along the magnetic polarity inversion line and outward flows from the peripheral regions of the sunspots were observed in the two active regions. The helicities injected in NOAA 11158 and 11166 during their six days' evolution period were estimated as Mx and Mx, respectively. The estimated injection rates decreased up to 13% by increasing the time interval between the magnetograms from 12 min to 36 min, and increased up to 9% by decreasing the DAVE window size from to pixel, resulting in 10% variation in the accumulated helicity. In both ARs, the flare prone regions (R2) had inhomogeneous helicity flux distribution with mixed helicities of both signs and that of CME prone regions had almost homogeneous distribution of helicity flux dominated by single sign. The temporal profiles of helicity injection showed impulsive variations during some flares/CMEs due to negative helicity injection into the dominant region of positive helicity flux. A quantitative analysis reveals a marginally significant association of helicity flux with CMEs but not flares in AR 11158, while for the AR 11166, we found marginally significant association of helicity flux with flares but not CMEs, providing evidences of the role of helicity injection at localized sites of the events.
In press, ApJ
References in corpus (2)
Cited by in corpus (32)
- The Magnetic Field in the Solar Atmosphere
- Relative magnetic helicity as a diagnostic of solar eruptivity
- Interpreting Eruptive Behavior in NOAA AR 11158 via the Region's Magnetic Energy and Relative Helicity Budgets
- Advances in mean-field dynamo theory and applications to astrophysical turbulence
- Structure and Evolution of Magnetic Fields Associated with Solar Eruptions (Invited Review)
- Magnetic helicity and energy budget around large confined and eruptive solar flares
- The Magnetic Field of Active Region 11158 During the 2011 February 12-17 Flares : Differences between Photospheric Extrapolation and Coronal Forward-Fitting Methods
- Quasi-Static 3D-Magnetic Field Evolution in Solar Active Region NOAA 11166 Associated with X1.5 Flare
- The Vertical Current Approximation Nonlinear Force-Free Field Code - Description, Performance Tests, and Measurements of Magnetic Energies Dissipated in Solar Flares
- Very fast helicity injection leading to critically stable state and large eruptive activity in solar active region NOAA 12673
- Magnetic helicity and energy spectra of a solar active region
- Two-scale analysis of solar magnetic helicity
- The nonpotentiality of coronae of solar active regions, the dynamics of the surface magnetic field, and the potential for large flares
- First observational application of a connectivity--based helicity flux density
- Parallel Evolution of Quasi-separatrix Layers and Active Region Upflows
- Successive Injection of Opposite Magnetic Helicity in Solar Active Region NOAA 11928
- Flux Emergence in the Solar Active Region NOAA 11158: The Evolution of Net Current
- Distinguishing between Flaring and Non-Flaring Active Regions: A Machine Learning Perspective
- Waiting Times of Quasi-homologous Coronal Mass Ejections from Super Active Regions
- Differences in periodic magnetic helicity injection behaviour between flaring and non-flaring Active Regions: Case Study
- Determining the Transport of Magnetic Helicity and Free Energy in the Sun's Atmosphere
- Sign singularity and flares in solar active region NOAA 11158
- A Survey of Changes in Magnetic Helicity Flux on the Photosphere During Relatively Low Class Flares
- Studying the transfer of magnetic helicity in solar active regions with the connectivity-based helicity flux density method
- Sunspots rotation and magnetic transients associated with flares in NOAA AR 11429
- Successive Injection of Opposite Magnetic Helicity: Evidence for Active Regions without Coronal Mass Ejections
- An application of the weighted horizontal magnetic gradient to solar compact and eruptive events
- Spatio-temporal scaling of turbulent photospheric line-of-sight magnetic field in active region NOAA 11158
- Photospheric Magnetic Free Energy Density of Solar Active Regions
- Dynamics of Subsurface Flows in Solar Active Regions During the May 2024 Storm
- Sunspot shearing and sudden retraction motion associated with the 2013 August 17 M3.3 Flare
- Nature of helicity injection in non-erupting solar active regions