Turbulent dynamos with shear and fractional helicity
arXiv:0810.2298 · doi:10.1088/0004-637X/699/2/1059
Abstract
Dynamo action owing to helically forced turbulence and large-scale shear is studied using direct numerical simulations. The resulting magnetic field displays propagating wave-like behavior. This behavior can be modelled in terms of an αΩdynamo. In most cases super-equipartition fields are generated. By varying the fraction of helicity of the turbulence the regeneration of poloidal fields via the helicity effect (corresponding to the α-effect) is regulated. The saturation level of the magnetic field in the numerical models is consistent with a linear dependence on the ratio of the fractional helicities of the small and large-scale fields, as predicted by a simple nonlinear mean-field model. As the magnetic Reynolds number (Rm) based on the wavenumber of the energy-carrying eddies is increased from 1 to 180, the cycle frequency of the large-scale field is found to decrease by a factor of about 6 in cases where the turbulence is fully helical. This is interpreted in terms of the turbulent magnetic diffusivity, which is found to be only weakly dependent on Rm.
8 pages, 11 figures, changed to match published version
References in corpus (16)
- The case for a distributed solar dynamo shaped by near-surface shear
- Magnetic diffusivity tensor and dynamo effects in rotating and shearing turbulence
- Large-scale dynamos in turbulent convection with shear
- Generation of Magnetic Field by Combined Action of Turbulence and Shear
- Turbulent magnetic Prandtl number and magnetic diffusivity quenching from simulations
- Kinematic alpha effect in isotropic turbulence simulations
- Minimal tau approximation and simulations of the alpha effect
- Nonlinear magnetic diffusivity and alpha tensors in helical turbulence
- Large-scale Dynamo Action Driven by Velocity Shear and Rotating Convection
- Strong mean field dynamos require supercritical helicity fluxes
- Large-scale dynamos in rigidly rotating turbulent convection
- Alpha effect and diffusivity in helical turbulence with shear
- Numerical experiments on dynamo action in sheared and rotating turbulence
- Magnetic helicity effects in astrophysical and laboratory dynamos
- Numerical study of large-scale vorticity generation in shear-flow turbulence
- Simulations of the anisotropic kinetic and magnetic alpha effects
Cited by in corpus (36)
- Cyclic magnetic activity due to turbulent convection in spherical wedge geometry
- The Turbulent Dynamo
- Superflare occurrence and energies on G-, K- and M-type dwarfs
- Alpha effect and turbulent diffusion from convection
- Advances in mean-field dynamo theory and applications to astrophysical turbulence
- Convective dynamos in spherical wedge geometry
- Small-scale magnetic helicity losses from a mean-field dynamo
- Magnetic Quenching of Turbulent Diffusivity: Reconciling Mixing-length Theory Estimates with Kinematic Dynamo Models of the Solar Cycle
- Dynamo-driven plasmoid ejections above a spherical surface
- Models for the long-term variations of solar activity
- Babcock-Leighton solar dynamo: the role of downward pumping and the equatorward propagation of activity
- Catastrophic quenching in alpha-Omega dynamos revisited
- Oscillatory migrating magnetic fields in helical turbulence in spherical domains
- Quenching and anisotropy of hydromagnetic turbulent transport
- Advances in theory and simulations of large-scale dynamos
- Dynamo action and magnetic buoyancy in convection simulations with vertical shear
- Helicity and alpha-effect by current-driven instabilities of helical magnetic fields
- The alpha effect in rotating convection with sinusoidal shear
- Magnetic helicity flux in the presence of shear
- Faraday signature of magnetic helicity from reduced depolarization
- Open and closed boundaries in large-scale convective dynamos
- Is the small-scale magnetic field correlated with the dynamo cycle?
- Oscillatory large-scale dynamos from Cartesian convection simulations
- Turbulent reconnection of magnetic bipoles in stratified turbulence
- Hysteresis between distinct modes of turbulent dynamos
- Shear-driven and diffusive helicity fluxes in alpha-Omega dynamos
- The kinetic helicity needed to drive large-scale dynamos
- Stellar Dynamos with Solar and Anti-solar Differential Rotations: Implications to Magnetic Cycles of Slowly Rotating Stars
- Lagrangian coherent structures in nonlinear dynamos
- Turbulent viscosity and effective magnetic Prandtl number from simulations of isotropically forced turbulence
- The fratricide of alpha-Omega dynamos by their alpha-squared siblings
- Non-linear Galactic Dynamos and the Magnetic Rädler Effect
- Quantifying the effect of turbulent magnetic diffusion on the growth rate of the magneto-rotational instability
- Convection-driven kinematic dynamos with a self-consistent shear flow
- Effect of flow shear on the onset of dynamos
- Cycles and cycle modulations