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arxiv: 1405.5375 · v2 · pith:YWTRRLIVnew · submitted 2014-05-21 · ⚛️ physics.plasm-ph · physics.space-ph

Collision-dependent power law scalings in 2D gyrokinetic turbulence

classification ⚛️ physics.plasm-ph physics.space-ph
keywords scalesturbulencecascadecollisionaldissipationelectrostaticenergyfree
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Nonlinear gyrokinetics provides a suitable framework to describe short-wavelength turbulence in magnetized laboratory and astrophysical plasmas. In the electrostatic limit, this system is known to exhibit a free energy cascade towards small scales in (perpendicular) real and/or velocity space. The dissipation of free energy is always due to collisions (no matter how weak the collisionality), but may be spread out across a wide range of scales. Here, we focus on freely-decaying 2D electrostatic turbulence on sub-ion-gyroradius scales. An existing scaling theory for the turbulent cascade in the weakly collisional limit is generalized to the moderately collisional regime. In this context, non-universal power law scalings due to multiscale dissipation are predicted, and this prediction is confirmed by means of direct numerical simulations.

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