Influence of up-down asymmetry in plasma shape on RMP response

Shaping effect on the plasma response to the externally applied resonant magnetic perturbation field is investigated for both DIII-D and MAST experiments, utilizing toroidal modeling. The plasma boundary shape is systematically varied ranging from single-null (SN) to double-null (DN) configurations,...

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Veröffentlicht in:Plasma physics and controlled fusion 2021-06, Vol.63 (6), p.65003
Hauptverfasser: Liu, Yueqiang, Lyons, B C, Gu, Shuai, Kirk, A, Li, Li, Paz-Soldan, C, Shafer, M W, Turnbull, A D
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Sprache:eng
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Zusammenfassung:Shaping effect on the plasma response to the externally applied resonant magnetic perturbation field is investigated for both DIII-D and MAST experiments, utilizing toroidal modeling. The plasma boundary shape is systematically varied ranging from single-null (SN) to double-null (DN) configurations, while other equilibrium quantities are kept largely unchanged. The relative amplitude of the computed plasma surface displacement, between the top/bottom of the torus and the outboard mid-plane, is identified as the most reliable indicator that distinguishes the plasma response between the SN and DN configurations. The underlying physics is the weakening of the edge-peeling component in the plasma response with increasing up-down symmetry of the plasma boundary shape.
ISSN:0741-3335
1361-6587
DOI:10.1088/1361-6587/abf572