Dynamo Action in the Presence of an Imposed Magnetic Field
arXiv:0901.3734 · doi:10.1098/rspa.2008.0493
Abstract
We consider the linear stability to three-dimensional perturbations of two-dimensional nonlinear magnetohydrodynamic basic states obtained from a specified forcing function in the presence of an imposed initially uniform magnetic field of strength . The forcing is chosen such that it drives the CP flow of Galloway & Proctor (1992) when . We first examine the properties of these basic states and their dependence on and on the magnetic Reynolds number . The linear stability of these states is then investigated. It is found that at a given the presence of a background field is stabilising. The results also allow us to speculate that at a fixed value of the growth of the unstable perturbations is `fast', in the sense that the growth rate becomes independent of as .
18 pages, 8 figures, submitted to Proc Roy Soc A