Effects of magnetic geometry, fluctuations, and electric fields on confinement in the Advanced Toroidal Facility
- 1 July 1992
- journal article
- Published by AIP Publishing in Physics of Fluids B: Plasma Physics
- Vol. 4 (7) , 2104-2110
- https://doi.org/10.1063/1.860018
Abstract
Recent experiments in the Advanced Toroidal Facility (ATF) [Fusion Technol. 10, 179 (1986)] have been directed toward investigations of the basic physics mechanisms that control confinement in this device. Measurements of the density fluctuations throughout the plasma volume have provided indications for the existence of theoretically predicted dissipative trapped electron and resistive interchange instabilities. These identifications are supported by results of dynamic configuration scans of the magnetic fields during which the magnetic well volume, shear, and fraction of confined trapped particles are changed continuously. The influence of magnetic islands on the global confinement has been studied by deliberately applying error fields which strongly perturb the nested flux‐surface geometry, and the effects of electric fields have been investigated by means of biased limiter experiments.Keywords
This publication has 9 references indexed in Scilit:
- Recent results from the ATF torsatronPhysics of Fluids B: Plasma Physics, 1991
- Characteristics of edge plasma turbulence on the ATF torsatronPhysics of Fluids B: Plasma Physics, 1991
- Radiative losses and improvement of plasma parameters after gettering in the Advanced Toroidal FacilityNuclear Fusion, 1991
- ATF heavy ion beam probe: Installation and initial operationReview of Scientific Instruments, 1990
- ATF two-frequency correlation reflectometerReview of Scientific Instruments, 1990
- Second stability in the ATF torsatronPhysical Review Letters, 1989
- Thermal diffusivity induced by resistive pressure-gradient-driven turbulencePhysics of Fluids B: Plasma Physics, 1989
- The Advanced Toroidal FacilityFusion Technology, 1986
- Magnetohydrodynamic theory of plasma equilibrium and stability in stellarators: Survey of resultsPhysics of Fluids, 1983