Galaxies (Sep 2020)

Mean-Field Dynamo Model in Anisotropic Uniform Turbulent Flow with Short-Time Correlations

  • E. V. Yushkov,
  • R. Allahverdiyev,
  • D. D. Sokoloff

DOI
https://doi.org/10.3390/galaxies8030068
Journal volume & issue
Vol. 8, no. 3
p. 68

Abstract

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The mean-field model is one of the basic models of the dynamo theory, which describes the magnetic field generation in a turbulent astrophysical plasma. The first mean-field equations were obtained by Steenbeck, Krause and Rädler for two-scale turbulence under isotropy and uniformity assumptions. In this article we develop the path integral approach to obtain mean-field equations for a short-correlated random velocity field in anisotropic streams. By this model we analyse effects of anisotropy and show the relation between dynamo growth and anisotropic tensors of helicity/turbulent diffusivity. Considering particular examples and comparing results with isotropic cases we demonstrate several mean-field effects: super-exponential growth at initial times, complex dependence of harmonics growth on the helicity tensor structure, when generation is possible for near-zero component or near-zero helicity trace, increase of the averaged magnetic field inclined to the initial current density that leads to effective Lorentz back-reaction and violation of force-free conditions.

Keywords