Published October 2011 | Version v1
Journal article

A weakened cascade model for turbulence in astrophysical plasmas

  • 1. Isaac Newton Institute for Mathematical Sciences, Cambridge, CB3 0EH (United Kingdom)
  • 2. Department of Physics and Astronomy, University of Iowa, Iowa City, Iowa 52242 (United States)
  • 3. Department of Physics, University of Maryland, College Park, Maryland 20742-3511 (United States)

Description

A refined cascade model for kinetic turbulence in weakly collisional astrophysical plasmas is presented that includes both the transition between weak and strong turbulence and the effect of nonlocal interactions on the nonlinear transfer of energy. The model describes the transition between weak and strong MHD turbulence and the complementary transition from strong kinetic Alfven wave (KAW) turbulence to weak dissipating KAW turbulence, a new regime of weak turbulence in which the effects of shearing by large scale motions and kinetic dissipation play an important role. The inclusion of the effect of nonlocal motions on the nonlinear energy cascade rate in the dissipation range, specifically the shearing by large-scale motions, is proposed to explain the nearly power-law energy spectra observed in the dissipation range of both kinetic numerical simulations and solar wind observations.

Additional details

Identifiers

Publishing Information

Journal Title
Physics of Plasmas
Journal Volume
18
Journal Issue
10
Journal Page Range
p. 102305-102305.18
ISSN
1070-664X
CODEN
PHPAEN

Optional Information

Notes
(c) 2011 American Institute of Physics