arXiv · 1003.4718
Two-step Emergence of the Magnetic Flux Sheet from the Solar Convection Zone
Abstract
We perform two-dimensional MHD simulations on the solar flux emergence. We set the initial magnetic flux sheet at z=-20,000 km in the convection zone. The flux sheet rises through the convective layer due to the Parker instability, however, decelerates beneath the photosphere because the plasma on the flux sheet piles up owing to the convectively stable photosphere above. Meanwhile, the flux sheet becomes locally unstable to the Parker instability within the photosphere, and the further evolution to the corona occurs (two-step emergence model). We carry out a parameter survey to investigate the condition for this two-step model. We find that magnetic fluxes which form active regions are likely to have undergone the two-step emergence. The condition for the two-step emergence is 10^21 - 10^22 Mx with 10^4 G at z=-20,000 km in the convection zone.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Shin Toriumi, Takaaki Yokoyama. 2010-03-23. Two-step Emergence of the Magnetic Flux Sheet from the Solar Convection Zone. https://doi.org/10.1088/0004-637x%2F714%2F1%2F505
Cite the original work for its findings. Save a collection to share your selection of sources.