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Gyrokinetic simulations of electric current generation in ion temperature gradient driven turbulence

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arxiv 2110.14219 v1 pith:T4OQIK7M submitted 2021-10-27 physics.plasm-ph

Gyrokinetic simulations of electric current generation in ion temperature gradient driven turbulence

classification physics.plasm-ph
keywords currentturbulencedrivendivergencefinegenerationgyrokineticnear
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Gyrokinetic simulations in the collisionless limit demonstrate the physical mechanisms and the amplitude of the current driven by turbulence. Simulation results show the spatio-temporal variation of the turbulence driven current and its connection to the divergence of the Reynolds stress and the turbulence acceleration. Fine structures (a few ion Larmor radii) of the turbulence induced current are observed near the rational surfaces with the arbitrary wavelength solver of the quasi-neutrality equation. The divergence of the Reynolds stress plays a major role in the generation of these fine structures. The so-called "spontaneous" current is featured with large local magnitude near the rational surfaces.

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