Simulation of the Formation of a Solar Active Region
arXiv:1006.4117 · doi:10.1088/0004-637X/720/1/233
Abstract
We present a radiative magnetohydrodynamics simulation of the formation of an Active Region on the solar surface. The simulation models the rise of a buoyant magnetic flux bundle from a depth of 7.5 Mm in the convection zone up into the solar photosphere. The rise of the magnetic plasma in the convection zone is accompanied by predominantly horizontal expansion. Such an expansion leads to a scaling relation between the plasma density and the magnetic field strength such that . The emergence of magnetic flux into the photosphere appears as a complex magnetic pattern, which results from the interaction of the rising magnetic field with the turbulent convective flows. Small-scale magnetic elements at the surface first appear, followed by their gradual coalescence into larger magnetic concentrations, which eventually results in the formation of a pair of opposite polarity spots. Although the mean flow pattern in the vicinity of the developing spots is directed radially outward, correlations between the magnetic field and velocity field fluctuations allow the spots to accumulate flux. Such correlations result from the Lorentz-force driven, counter-streaming motion of opposite-polarity fragments. The formation of the simulated Active Region is accompanied by transient light bridges between umbrae and umbral dots. Together with recent sunspot modeling, this work highlights the common magnetoconvective origin of umbral dots, light bridges and penumbral filaments.
Accepted for publication in ApJ
References in corpus (20)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Magneto-convection in a sunspot umbra
- Emergence of Small-Scale Magnetic Loops in the Quiet Sun Internetwork
- Penumbral structure and outflows in simulated sunspots
- Solar surface emerging flux regions: a comparative study of radiative MHD modeling and Hinode SOT observations
- Magnetic flux emergence in granular convection: Radiative MHD simulations and observational signatures
- Emergence of small-scale magnetic loops through the quiet solar atmosphere
- Twisted flux tube emergence from the convection zone to the corona
- MHD simulations of penumbra fine structure
- Solar Flux Emergence Simulations
- Low-lying magnetic loops in the solar internetwork
- 3D view of transient horizontal magnetic fields in the photosphere
- Twisted flux tube emergence from the convection zone to the corona II: Later states
- Simulation of Flux Emergence from the Convection Zone to the Corona
- Detection of sea-serpent field lines in sunspot penumbrae
- On the emergence of toroidal flux tubes: general dynamics and comparisons with the cylinder model
- The role of emerging bipoles in the formation of a sunspot penumbra
- Two-step Emergence of the Magnetic Flux Sheet from the Solar Convection Zone
- Granular Scale Magnetic Flux Cancellations in the Photosphere
- Explanation of the sea-serpent magnetic structure of sunspot penumbrae
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- The Origin of Major Solar Activity - Collisional Shearing Between Nonconjugated Polarities of Multiple Bipoles Emerging Within Active Regions
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- Analysing the effects of apodizing windows on local correlation tracking using Nirvana simulations of convection
- Three-dimensional magnetohydrodynamic simulation of the solar magnetic flux emergence: Parametric study on the horizontal divergent flow
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- Toward a live homogeneous database of solar active regions based on SOHO/MDI and SDO/HMI synoptic magnetograms.II.parameters for solar cycle variability
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