We report results from experiments performed to study how a change in boundary conditions affects the plasma state in the toroidal geometry of the Blaamann device in Tromso. The boundary condition was changed by applying a dc bias on a limiter extended around the entire poloidal circumference of the plasma column. Two distinctly different plasma potential states were found. One state was associated with a bias at or negative with respect to the floating potential of the limiter, and a small ion-saturation current. The other state was associated with a positive bias with respect to the floating potential, near or in the electron saturation regime of the limiter. In the latter case the potential minimum in the middle of the cross-section was significantly less negative than in the case of ion-saturation current to the limiter. On the other hand, the grounded limiter provided the best confinement properties, for which the density maximum was significantly higher than for both more positive and more negative biases. This state also had the lowest fluctuation levels, and near zero poloidal velocities close to the boundaries, as well as the smallest radial, anomalous particle transport.

Fredriksen, A., Riccardi, C., Magni, S. (2006). Effects of edge dc biasing on plasma rotation and transport in a toroidal geometry. PHYSICA SCRIPTA, T122, 11-14 [10.1088/0031-8949/2006/T122/004].

Effects of edge dc biasing on plasma rotation and transport in a toroidal geometry

RICCARDI, CLAUDIA;
2006

Abstract

We report results from experiments performed to study how a change in boundary conditions affects the plasma state in the toroidal geometry of the Blaamann device in Tromso. The boundary condition was changed by applying a dc bias on a limiter extended around the entire poloidal circumference of the plasma column. Two distinctly different plasma potential states were found. One state was associated with a bias at or negative with respect to the floating potential of the limiter, and a small ion-saturation current. The other state was associated with a positive bias with respect to the floating potential, near or in the electron saturation regime of the limiter. In the latter case the potential minimum in the middle of the cross-section was significantly less negative than in the case of ion-saturation current to the limiter. On the other hand, the grounded limiter provided the best confinement properties, for which the density maximum was significantly higher than for both more positive and more negative biases. This state also had the lowest fluctuation levels, and near zero poloidal velocities close to the boundaries, as well as the smallest radial, anomalous particle transport.
Articolo in rivista - Articolo scientifico
magnetoplasma; anomalous transport; electric field
English
2006
T122
11
14
none
Fredriksen, A., Riccardi, C., Magni, S. (2006). Effects of edge dc biasing on plasma rotation and transport in a toroidal geometry. PHYSICA SCRIPTA, T122, 11-14 [10.1088/0031-8949/2006/T122/004].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/441
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