Coherent structures identified in two reversed field pinch experiments are interpreted as a dynamic balance of dipolar and monopolar vortices growing and evolving under the effect of the ExB flow shear. For the first time their contribution to the anomalous transport has been estimated in fusion related plasmas, showing that they can account for up to 50% of the total plasma diffusivity. The experimental findings indicate that the diffusion coefficient associated with the coherent structures depends on the relative population of the two types of vortices and is minimum when the two populations are equal. An interpretative model is proposed to explain this feature.
Spolaore, M., Antoni, V., Spada, E., Bergsaker, H., Cavazzana, R., Drake, J., et al. (2004). Vortex-induced diffusivity in reversed field pinch plasmas. PHYSICAL REVIEW LETTERS, 93(21), 1-4 [10.1103/PhysRevLett.93.215003].
Vortex-induced diffusivity in reversed field pinch plasmas
Martines E;
2004
Abstract
Coherent structures identified in two reversed field pinch experiments are interpreted as a dynamic balance of dipolar and monopolar vortices growing and evolving under the effect of the ExB flow shear. For the first time their contribution to the anomalous transport has been estimated in fusion related plasmas, showing that they can account for up to 50% of the total plasma diffusivity. The experimental findings indicate that the diffusion coefficient associated with the coherent structures depends on the relative population of the two types of vortices and is minimum when the two populations are equal. An interpretative model is proposed to explain this feature.File | Dimensione | Formato | |
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