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Radial electric field measurement in a tokamak with magnetic field ripple
34
Citations
22
References
2008
Year
EngineeringNuclear PhysicsPlasma PhysicsSpace Plasma PhysicE RMagnetic Confinement FusionMagnetic Field RippleMagnetismTore Supra TokamakPlasma TheoryPlasma SimulationMagnetohydrodynamicsPlasma ConfinementRipple WellsInstrumentationElectrical EngineeringPhysicsBasic Plasma PhysicFundamental Plasma PhysicPlasma InstabilityMagnetic ConfinementCosmic RayNuclear AstrophysicsNatural SciencesNon-axisymmetric Plasma Configurations
In the regions of the Tore Supra tokamak with significant ripple it is expected that a radial electric field ( E r ) ensures the ambipolarity of fluxes of thermal particles trapped in ripple wells. A neoclassical calculation (Connor and Hastie 1973 Nucl. Fusion 13 221 , Stringer 1972 Nucl. Fusion 12 689 ) shows that E r is related to ion temperature and density gradients. The validity of this relation is investigated in a series of Tore Supra L-mode discharges without external momentum input. Doppler reflectometry measurements of fluctuations perpendicular velocity, which is dominated by the E r × B drift, are found to be in good agreement with the predicted neoclassical E r .
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