English

D-dimensional developed MHD turbulence: Double expansion model

Chaotic Dynamics 2009-11-11 v1

Abstract

Developed magnetohydrodynamic turbulence near two dimensions dd up to three dimensions has been investigated by means of renormalization group approach and double expansion regularization. A modification of standard minimal subtraction scheme has been used to analyze the stability of the Kolmogorov scaling regime which is governed by the renormalization group fixed point. The exact analytical expressions have been obtained for the fixed points. The continuation of the universal value of the inverse Prandtl number u=1.562u=1.562 determined at d=2d=2 up to d=3d=3 restores the value of u=1.393u=1.393 which is known in the kinetic fixed point from usual ϵ\epsilon-expansion. The magnetic stable fixed point has been calculated and its stability region has been also examined. This point losses stability: (1) below critical value of dimension dc=2.36d_c=2.36 (independently on the aa-parameter of a magnetic forcing) and, (2) below the value of ac=0.146a_c=0.146 (independently on the dimension).

Keywords

Cite

@article{arxiv.nlin/0605054,
  title  = {D-dimensional developed MHD turbulence: Double expansion model},
  author = {M. Jurcisin and M. Stehlik},
  journal= {arXiv preprint arXiv:nlin/0605054},
  year   = {2009}
}

Comments

16 pages, Talk presented by M. Stehlik at the Conference "Renormalization Group 2005", Helsinki, Finland 30 August - 3 September 2005. To apear in J. Phys. A: Math. Gen

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