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Excitation of Zonal Flow by Intermediate-Scale Toroidal Electron Temperature Gradient Turbulence

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arxiv 2011.08256 v1 pith:KWC6ZKVS submitted 2020-11-16 physics.plasm-ph

classification physics.plasm-ph
keywords flowintermediate-scaleturbulencezonalelectrongradientgyrokinetictemperature
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We show that zonal flow can be preferentially excited by intermediate-scale toroidal electron temperature gradient (ETG) turbulence in tokamak plasmas. Previous theoretical studies that yielded an opposite conclusion assumed a fluid approximation for ETG modes. Here, we carry out a gyrokinetic analysis which ultimately yields a nonlinear Schr\"{o}dinger equation for the ETG dynamics with a Navier-Stokes type nonlinearity. For typical tokamak parameters, it is found that zonal flow generation plays an important role in the intermediate-scale ETG turbulence. This finding offers an explanation for recent multi-scale gyrokinetic simulations.

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