Large-scale 3D MHD simulation on the solar flux emergence and the small-scale dynamic features in an active region
arXiv:1201.2809 · doi:10.1051/0004-6361/201118009
Abstract
We have performed a three-dimensional magnetohydrodynamic simulation to study the emergence of a twisted magnetic flux tube from -20,000 km of the solar convection zone to the corona through the photosphere and the chromosphere. The middle part of the initial tube is endowed with a density deficit to instigate a buoyant emergence. As the tube approaches the surface, it extends horizontally and makes a flat magnetic structure due to the photosphere ahead of the tube. Further emergence to the corona breaks out via the interchange-mode instability of the photospheric fields, and eventually several magnetic domes build up above the surface. What is new in this three-dimensional experiment is, multiple separation events of the vertical magnetic elements are observed in the photospheric magnetogram, and they reflect the interchange instability. Separated elements are found to gather at the edges of the active region. These gathered elements then show shearing motions. These characteristics are highly reminiscent of active region observations. On the basis of the simulation results above, we propose a theoretical picture of the flux emergence and the formation of an active region that explains the observational features, such as multiple separations of faculae and the shearing motion.
12 pages, 7 figures, 1 table, accepted to A&A
References in corpus (1)
Cited by in corpus (13)
- Flare-productive active regions
- From coronal observations to MHD simulations, the building blocks for 3D models of solar flares
- Numerical Simulations of Flare-productive Active Regions: delta-sunspots, Sheared Polarity Inversion Lines, Energy Storage, and Predictions
- Magnetic Systems Triggering the M6.6-class Solar Flare in NOAA Active Region 11158
- Formation of a Flare-Productive Active Region: Observation and Numerical Simulation of NOAA AR 11158
- Kinetic modeling of particle acceleration in a solar null point reconnection region
- Statistical Analysis of the Horizontal Divergent Flow in Emerging Solar Active Regions
- Detection of the Horizontal Divergent Flow prior to the Solar Flux Emergence
- Probing the Shallow Convection Zone: Rising Motion of Subsurface Magnetic Fields in the Solar Active Region
- The origin and early evolution of a bipolar magnetic region in the solar photosphere
- Three-dimensional magnetohydrodynamic simulation of the solar magnetic flux emergence: Parametric study on the horizontal divergent flow
- Plasma flows and magnetic field interplay during the formation of a pore
- The Rise and Emergence of Untwisted Toroidal Flux Ropes on the Sun