Dynamic Nonlinearity in Large‐Scale Dynamos with Shear
- 1 November 2002
- journal article
- research article
- Published by American Astronomical Society in The Astrophysical Journal
- Vol. 579 (1) , 359-373
- https://doi.org/10.1086/342705
Abstract
We supplement the mean field dynamo growth equation with the total magnetic helicity evolution equation. This provides an explicitly time-dependent model for α-quenching in dynamo theory. For dynamos without shear, this approach accounts for the observed large-scale field growth and saturation in numerical simulations. After a significant kinematic phase, the dynamo is resistively quenched, i.e., the saturation time depends on the microscopic resistivity. This is independent of whether or not the turbulent diffusivity is resistively quenched. We find that the approach is also successful for dynamos that include shear and exhibit migratory waves (cycles). In this case, however, whether or not the cycle period remains of the order of the dynamical timescale at large magnetic Reynolds numbers does depend on how the turbulent magnetic diffusivity quenches. Since this is unconstrained by magnetic helicity conservation, the diffusivity is currently an input parameter. Comparison with current numerical experiments suggests a turbulent diffusivity that depends only weakly on the magnetic Reynolds number, but higher resolution simulations are needed.Keywords
All Related Versions
This publication has 35 references indexed in Scilit:
- Magnetic helicity in stellar dynamos: new numerical experimentsAstronomische Nachrichten, 2002
- Effect of Hyperdiffusivity on Turbulent Dynamos with HelicityPhysical Review Letters, 2002
- The helicity constraint in turbulent dynamos with shearMonthly Notices of the Royal Astronomical Society, 2001
- Large scale dynamos with helicity loss through boundariesAstronomy & Astrophysics, 2001
- The Inverse Cascade and Nonlinear Alpha‐Effect in Simulations of Isotropic Helical Hydromagnetic TurbulenceThe Astrophysical Journal, 2001
- Constraints on the Magnitude of α in Dynamo TheoryThe Astrophysical Journal, 2000
- Time Evolution of the Magnetic Activity Cycle PeriodThe Astrophysical Journal, 1998
- Magnetic structures in a dynamo simulationJournal of Fluid Mechanics, 1996
- Self-Consistency Constraints on the Dynamo MechanismThe Astrophysical Journal, 1995
- Dynamo-generated Turbulence and Large-Scale Magnetic Fields in a Keplerian Shear FlowThe Astrophysical Journal, 1995