Destabilisation of hydrodynamically stable rotation laws by azimuthal magnetic fields
arXiv:astro-ph/0701454 · doi:10.1111/j.1365-2966.2007.11682.x
Abstract
We consider the effect of toroidal magnetic fields on hydrodynamically stable Taylor-Couette differential rotation flows. For current-free magnetic fields a nonaxisymmetric m=1 magnetorotational instability arises when the magnetic Reynolds number exceeds O (100). We then consider how this `azimuthal magnetorotational instability' (AMRI) is modified if the magnetic field is not current-free, but also has an associated electric current throughout the fluid. This gives rise to current-driven Tayler instabilities (TI) that exist even without any differential rotation at all. The interaction of the AMRI and the TI is then considered when both electric currents and differential rotation are present simultaneously. The magnetic Prandtl number Pm turns out to be crucial in this case. Large Pm have a destabilizing influence, and lead to a smooth transition between the AMRI and the TI. In contrast, small Pm have a stabilizing influence, with a broad stable zone separating the AMRI and the TI. In this region the differential rotation is acting to stabilize the Tayler instabilities, with possible astrophysical applications (Ap stars). The growth rates of both the AMRI and the TI are largely independent of Pm, with the TI acting on the timescale of a single rotation period, and the AMRI slightly slower, but still on the basic rotational timescale. The azimuthal drift timescale is ~20 rotations, and may thus be a (flip-flop) timescale of stellar activity between the rotation period and the diffusion time.
7 pages, 8 figures, submitted to MNRAS
References in corpus (2)
Cited by in corpus (14)
- Magnetohydrodynamic experiments on cosmic magnetic fields
- Stability of Toroidal Magnetic Fields in Rotating Stellar Radiation Zones
- Stratorotational instability in MHD Taylor-Couette flows
- The Super-Alfvénic Rotational Instability in accretion disks about black holes
- Energy distribution in nonaxisymmetric magnetic Taylor-Couette flow
- Stratorotational instability in Taylor-Couette flow heated from above
- Helical magnetorotational instability of Taylor-Couette flows in the Rayleigh limit and for quasi-Kepler rotation
- Legolas: magnetohydrodynamic spectroscopy with viscosity and Hall current
- Interplay between tidal flows and magnetic fields in nonlinear simulations of stellar and planetary convective envelopes
- Angular momentum and lithium transport from main sequence to sub-giant and red giant low-mass stars
- Metamorphosis of helical magnetorotational instability in the presence axial electric current
- Toroidal field instability and eddy viscosity in Taylor-Couette flows
- Modelling the time variation of the surface differential rotation in AB Doradus and LQ Hydrae
- Magnetic pinch-type instability in stellar radiative zones