Magnetic flux generation and transport in cool stars
arXiv:1102.0569 · doi:10.1051/0004-6361/201014501
Abstract
The Sun and other cool stars harbouring outer convection zones manifest magnetic activity in their atmospheres. The connection between this activity and the properties of a deep-seated dynamo generating the magnetic flux is not well understood. By employing physical models, we study the spatial and temporal characteristics of the observable surface field for various stellar parameters. We combine models for magnetic flux generation, buoyancy instability, and transport, which encompass the entire convection zone. The model components are: (1) a thin-layer alpha-Omega dynamo at the base of the convection zone; (2) buoyancy instabilities and the rise of flux tubes through the convection zone in 3D, which provides a physically consistent determination of emergence latitudes and tilt angles; and (3) horizontal flux transport at the surface. For solar-type stars and rotation periods longer than about 10 days, the latitudinal dynamo waves generated by the deep-seated alpha-Omega dynamo are faithfully reflected by the surface distribution of magnetic flux. For rotation periods of the order of two days, however, Coriolis acceleration of rising flux loops leads to surface flux emergence at much higher latitudes than the dynamo waves at the bottom of the convection zone reach. A similar result is found for a K0V star with a rotation period of two days. In the case of a rapidly rotating K1 subgiant, overlapping dynamo waves lead to noisy activity cycles and mixed-polarity fields at high latitudes.
14 pages, 14 figures. Accepted for publication in Astronomy & Astrophysics
References in corpus (7)
- Exploring the vs relation with flux transport dynamo models of solar-like stars
- Magnetic flux transport on active cool stars and starspot lifetimes
- Butterfly Diagram and Activity Cycles in HR 1099
- A polarity reversal in the large-scale magnetic field of the rapidly rotating Sun HD 190771
- The impact of meridional circulation on stellar butterfly diagrams and polar caps
- A coupled model of magnetic flux generation and transport in stars
- Flow instabilities of magnetic flux tubes IV. Flux storage in the solar overshoot region
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