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Article Dans Une Revue Physics of Plasmas Année : 2015

Gyrokinetic turbulence cascade via predator-prey interactions between different scales

Résumé

Gyrokinetic simulations in a closed fieldline geometry are presented to explore the physics of nonlinear transfer in plasma turbulence. As spontaneously formed zonal flows and small-scale turbulence demonstrate “predator-prey” dynamics, a particular cascade spectrum emerges. The electrostatic potential and the density spectra appear to be in good agreement with the simple theoretical prediction based on Charney-Hasegawa-Mima equation |||ϕ̃k|||2∼||ñk||2∝k−3/(1 k2)2, with the spectra becoming anisotropic at small scales. The results indicate that the disparate scale interactions, in particular, the refraction and shearing of larger scale eddies by the self-consistent zonal flows, dominate over local interactions, and contrary to the common wisdom, the comprehensive scaling relation is created even within the energy injection region.
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Dates et versions

hal-01550955 , version 1 (29-06-2017)

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Sumire Kobayashi, Özgür D. Gürcan. Gyrokinetic turbulence cascade via predator-prey interactions between different scales. Physics of Plasmas, 2015, 22 (5), pp.050702. ⟨10.1063/1.4920965⟩. ⟨hal-01550955⟩
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