arXiv · 1607.08897
Sharp magnetic structures from dynamos with density stratification
Abstract
Recent direct numerical simulations (DNS) of large-scale turbulent dynamos in strongly stratified layers have resulted in surprisingly sharp bipolar structures at the surface. Here we present new DNS of helically and non-helically forced turbulence with and without rotation and compare with corresponding mean-field simulations (MFS) to show that these structures are a generic outcome of a broader class of dynamos in density-stratified layers. The MFS agree qualitatively with the DNS, but the period of oscillations tends to be longer in the DNS. In both DNS and MFS, the sharp structures are produced by converging flows at the surface and might be driven in nonlinear stage of evolution by the Lorentz force associated with the large-scale dynamo-driven magnetic field if the dynamo number is at least 2.5 times supercritical.
Explore related subjects
Keep this discovery
Sarah Jabbari, Axel Brandenburg, Nathan Kleeorin, Igor Rogachevskii. 2016-07-29. Sharp magnetic structures from dynamos with density stratification. https://doi.org/10.1093/mnras/stx148
Cite the original work for its findings. Save a collection to share your selection of sources.