Dynamics of the solar tachocline I: an incompressible study
Abstract
Gough & McIntyre have suggested that the dynamics of the solar tachocline are dominated by the advection-diffusion balance between the differential rotation, a large-scale primordial field and baroclinicly driven meridional motions. This paper presents the first part of a study of the tachocline, in which a model of the rotation profile below the convection zone is constructed along the lines suggested by Gough & McIntyre and solved numerically. In this first part, a reduced model of the tachocline is derived in which the effects of compressibility and energy transport on the system are neglected; the meridional motions are driven instead by Ekman-Hartmann pumping. It is shown that there exists only a narrow range of magnetic field strengths for which the system can achieve a nearly uniform rotation. The results are discussed with respect to observations and to the limitations of this initial approach. A following paper combines the effects of realistic baroclinic driving and stratification with a model that follows closely the lines of work of Gough & McIntyre.
Cite
@article{arxiv.astro-ph/0108276,
title = {Dynamics of the solar tachocline I: an incompressible study},
author = {P. Garaud},
journal= {arXiv preprint arXiv:astro-ph/0108276},
year = {2009}
}
Comments
18 pages, 15 figures, accepted by MNRAS