Edge plasma relaxations due to diamagnetic stabilization

Author:

Cianfrani Francesco1ORCID,Fuhr Guillaume1,Beyer Peter1

Affiliation:

1. Aix-Marseille Université, CNRS, PIIM, UMR 7345 Marseille, France

Abstract

A new mechanism for pressure profile relaxations in an edge tokamak plasma is derived from simulations within the two-fluid three-dimensional turbulence code EMEDGE3D. The relaxation is due to diamagnetic coupling in the resistive ballooning/drift wave dynamics: Unstable modes experience explosive growth at high pressure gradients after a phase in which they are stabilized by the diamagnetic coupling leading to the onset of a transport barrier. The sheared E ×  B flow does not play any significant role. After relaxation, the transport barrier forms again and it sets the conditions for a new relaxation event, resulting in an oscillatory behavior. We find that energy flux into the scrape-off layer decreases with the increasing oscillation frequency and that the oscillations are tamed by increasing plasma temperature. This behavior is reminiscent of the so-called type-III edge localized modes. A one-dimensional model reproducing the relaxations is also derived.

Funder

Aix-Marseille Université

Centre National de la Recherche Scientifique

Publisher

AIP Publishing

Subject

Condensed Matter Physics

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