Generating buoyant magnetic flux ropes in solar-like convective dynamos
arXiv:1401.1826 · doi:10.1088/0741-3335/56/6/064004
Abstract
Our Sun exhibits strong convective dynamo action which results in magnetic flux bundles emerging through the stellar surface as magnetic spots. Global-scale dynamo action is believed to generate large-scale magnetic structures in the deep solar interior through the interplay of convection, rotation, and shear. Portions of these large-scale magnetic structures are then believed to rise through the convective layer, forming magnetic loops which then pierce the photosphere as sunspot pairs. Previous global simulations of 3D MHD convection in rotating spherical shells have demonstrated mechanisms whereby large-scale magnetic wreaths can be generated in the bulk of the convection zone. Our recent simulations have achieved sufficiently high levels of turbulence to permit portions of these wreaths to become magnetically buoyant and rise through the simulated convective layer through a combination of magnetic buoyancy and advection by convective giant cells. These buoyant magnetic loops are created in the bulk of the convective layer as strong Lorentz force feedback in the cores of the magnetic wreaths dampen small-scale convective motions, permitting the amplification of local magnetic energies to over 100 times the local kinetic energy. While the magnetic wreaths are largely generated the shearing of axisymmetric poloidal magnetic fields by axisymmetric rotational shear (the -effect), the loops are amplified to their peak field strengths before beginning to rise by non-axisymmetric processes. This further extends and enhances a new paradigm for the generation of emergent magnetic flux bundles, which we term turbulence-enabled magnetic buoyancy.
16 pages, 6 figures, accepted for publication in Plasma Physics and Controlled Fusion special issue "Self-Organization in Magnetic Flux Ropes"
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Cited by in corpus (6)
- Advances in mean-field dynamo theory and applications to astrophysical turbulence
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- Driving Solar Giant Cells through the Self-Organization of Near-Surface Plumes
- Motivation and challenge to capture both large scale and local transport in next generation accretion theory
- On the origin of the solar hemispherical helicity rules: Simulations of the rise of magnetic flux concentrations in a background field
- The Rise and Emergence of Untwisted Toroidal Flux Ropes on the Sun