The negative effective magnetic pressure in stratified forced turbulence
arXiv:1005.5700 · doi:10.1088/0004-637X/749/2/179
Abstract
To understand the basic mechanism of the formation of magnetic flux concentrations, we determine by direct numerical simulations the turbulence contributions to the mean magnetic pressure in a strongly stratified isothermal layer with large plasma beta, where a weak uniform horizontal mean magnetic field is applied. The negative contribution of turbulence to the effective mean magnetic pressure is determined for strongly stratified forced turbulence over a range of values of magnetic Reynolds and Prandtl numbers. Small-scale dynamo action is shown to reduce the negative effect of turbulence on the effective mean magnetic pressure. However, the turbulence coefficients describing the negative effective magnetic pressure phenomenon are found to be converged for magnetic Reynolds numbers between 60 and 600, which is the largest value considered here. In all these models the turbulent intensity is arranged to be nearly independent of height, so the kinetic energy density decreases with height due to the decrease in density. In a second series of numerical experiments, the turbulent intensity increases with height such that the turbulent kinetic energy density is nearly independent of height. Turbulent magnetic diffusivity and turbulent pumping velocity are determined with the test-field method for both cases. The vertical profile of the turbulent magnetic diffusivity is found to agree with what is expected based on simple mixing length expressions. Turbulent pumping is shown to be down the gradient of turbulent magnetic diffusivity, but it is twice as large as expected. Corresponding numerical mean-field models are used to show that a large-scale instability can occur in both cases, provided the degree of scale separation is large enough and hence the turbulent magnetic diffusivity small enough.
15 pages, 18 figures, 2 tables, ApJ, accepted
References in corpus (26)
- The solar magnetic field
- Magneto-convection in a sunspot umbra
- Mean-field concept and direct numerical simulations of rotating magnetoconvection and the geodynamo
- Numerical demonstration of fluctuation dynamo at low magnetic Prandtl numbers
- Twisted flux tube emergence from the convection zone to the corona
- Turbulent magnetic Prandtl number and magnetic diffusivity quenching from simulations
- Scale dependence of alpha effect and turbulent diffusivity
- The baroclinic instability in the context of layered accretion. Self-sustained vortices and their magnetic stability in local compressible unstratified models of protoplanetary disks
- Minimal tau approximation and simulations of the alpha effect
- Magnetic fluctuations and formation of large-scale inhomogeneous magnetic structures in a turbulent convection
- Mechanism of spontaneous formation of stable magnetic structures on the Sun
- Nonlinear magnetic diffusivity and alpha tensors in helical turbulence
- Memory effects in turbulent transport
- Detection of negative effective magnetic pressure instability in turbulence simulations
- Nonlinear small-scale dynamos at low magnetic Prandtl numbers
- Test-field method for mean-field coefficients with MHD background
- Large-scale magnetic flux concentrations from turbulent stresses
- A growing dynamo from a saturated Roberts flow dynamo
- Spontaneous formation of flux concentrations in a stratified layer
- Alpha effect due to buoyancy instability of a magnetic layer
- Properties of the negative effective magnetic pressure instability
- Self-consistent mean field MHD
- The Nonlinear Evolution of Instabilities Driven by Magnetic Buoyancy: A New Mechanism for the Formation of Coherent Magnetic Structures
- Simulations of the anisotropic kinetic and magnetic alpha effects
- Small-scale magnetic buoyancy and magnetic pumping effects in a turbulent convection
- Suppression of the large-scale Lorentz force by turbulence
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- Large-Eddy Simulations of Magnetohydrodynamic Turbulence in Heliophysics and Astrophysics
- Order out of Randomness : Self-Organization Processes in Astrophysics
- Active region formation through the negative effective magnetic pressure instability
- Bipolar magnetic structures driven by stratified turbulence with a coronal envelope
- Self-assembly of shallow magnetic spots through strongly stratified turbulence
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- Intense bipolar structures from stratified helical dynamos
- Mean-field and direct numerical simulations of magnetic flux concentrations from vertical field
- Magnetic flux concentrations from turbulent stratified convection
- Magnetic concentrations in stratified turbulence: the negative effective magnetic pressure instability
- Turbulent reconnection of magnetic bipoles in stratified turbulence
- Magnetic flux concentrations from dynamo-generated fields
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- The dynamics of Wolf numbers based on nonlinear dynamo with magnetic helicity: comparisons with observations
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- Rotational effects on the negative magnetic pressure instability
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- Magnetic flux concentrations in a polytropic atmosphere
- Nonlinear mean-field dynamo and prediction of solar activity
- Properties of strongly magnetized ultradense matter and their imprints on magnetar pulsations
- The turbulent pressure of magnetoconvection for slow and rapid rotation
- Spontaneous flux concentrations from the negative effective magnetic pressure instability beneath a radiative stellar surface
- A new look at sunspot formation using theory and observations
- Role of longitudinal activity complexes for solar and stellar dynamos
- Nonuniformity effects in the negative effective magnetic pressure instability
- Flux concentrations in turbulent convection
- Magnetic bipoles in rotating turbulence with coronal envelope
- Cycles and cycle modulations
- Non-linear and chaotic dynamo regimes