Generation of twist on magnetic flux tubes at the base of the solar convection zone
arXiv:1210.7175 · doi:10.1051/0004-6361/201220108
Abstract
Using two-dimensional magnetohydrodynamics calculations, we investigate a twist gen- eration mechanism on a magnetic flux tube at the base of the solar convection zone based on the idea of Choudhuri, 2003, Sol. Phys., 215, 31 in which a toroidal mag- netic field is wrapped by a surrounding mean poloidal field. During generation of the twist, the flux tube follows four phases. (1) It quickly splits into two parts with vortex motions rolling up the poloidal magnetic field. (2) Owing to the physical mechanism similar to that of the magneto-rotational instability, the rolled-up poloidal field is bent and amplified. (3) The magnetic tension of the disturbed poloidal magnetic field re- duces the vorticity, and the lifting force caused by vortical motion decreases. (4) The flux tube gets twisted and begins to rise again without splitting. Investigation of these processes is significant because it shows that a flux tube without any initial twist can rise to the surface in relatively weak poloidal fields.
10 pages, 6 figure
References in corpus (2)
Cited by in corpus (5)
- High-resolution calculations of the solar global convection with the reduced speed of sound technique: I. The structure of the convection and the magnetic field without the rotation
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- A Critical Assessment of the Flux Transport Dynamo
- On the origin of the solar hemispherical helicity rules: Simulations of the rise of magnetic flux concentrations in a background field
- Flux Transport Dynamo: From Modelling Irregularities to Making Predictions