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Nonlocal Phenomenology for anisotropic MHD turbulence

Fluid Dynamics 2009-11-13 v1

Abstract

A non-local cascade model for anisotropic MHD turbulence in the presence of a guiding magnetic field is proposed. The model takes into account that (a) energy cascades in an anisotropic manner and as a result a different estimate for the cascade rate in the direction parallel and perpendicular to the guiding field is made. (b) the interactions that result in the cascade are between different scales. Eddies with wave numbers kk_\| and kk_\perp interact with eddies with wave numbers q,qq_\|,q_\perp such that a resonance condition between the wave numbers q,qq_\|,q_\perp and k,kk_\|,k_\perp holds. As a consequence energy from the eddy with wave numbers kk_\| and kk_\perp cascades due to interactions with eddies located in the resonant manifold whose wavenumbers are determined by: qϵ1/3k2/3/Bq_\|\simeq \epsilon^{{1}/{3}}k_\perp^{2/3}/B, q=kq_\perp=k_\perp and energy will cascade along the lines kC+k2/3ϵ1/3/B0k_\|\sim C+k_\perp^{2/3} \epsilon^{1/3}/B_0. For a uniform energy injection rate in the parallel direction the resulting energy spectrum is E(k,k)ϵ2/3k1k5/3E(k_\|,k_\perp)\simeq \epsilon^{2/3}k_\|^{-1}k_\perp^{-5/3}. For a general forcing however the model suggests a non-universal behavior. The connections with previous models, numerical simulations and weak turbulence theory are discussed.

Keywords

Cite

@article{arxiv.0706.0816,
  title  = {Nonlocal Phenomenology for anisotropic MHD turbulence},
  author = {Alexandros Alexakis},
  journal= {arXiv preprint arXiv:0706.0816},
  year   = {2009}
}

Comments

Submited to Astophys. Lett