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Excitation of zonal flow by drift waves in toroidal plasmas

Physics of Plasmas · 2000 · Vol. 7(8) · pp. 3129–3132
Liu ChenZhihong LinR. B. White

Abstract

An analytical dispersion relation is derived which shows that, in toroidal plasmas, zonal flows can be spontaneously excited via modulations in the radial envelope of a single-n coherent drift wave, with n the toroidal mode number. Predicted instability features are verified by three-dimensional global gyrokinetic simulations of the ion-temperature-gradient mode. Nonlinear equations for mode amplitudes demonstrate saturation of the linearly unstable pump wave and nonlinear oscillations of the drift-wave intensity and zonal flows, with a parameter-dependent period doubling route to chaos.

Magnetic confinement fusion researchIonosphere and magnetosphere dynamicsLaser-Plasma Interactions and DiagnosticsPhysicsToroidAmplitudeInstabilityDispersion relationZonal flow (plasma)PlasmaExcitationNonlinear systemEnvelope (radar)
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