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In, Yongkyoon
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Resonant field amplification with feedback-stabilized regime in Current driven resistive wall mode

Author(s)
Liu, YueqiangChu, M. S.In, YongkyoonOkabayashi, M.
Issued Date
2010-07
DOI
10.1063/1.3455540
URI
https://scholarworks.unist.ac.kr/handle/201301/23771
Fulltext
http://aip.scitation.org/doi/10.1063/1.3455540
Citation
PHYSICS OF PLASMAS, v.17, no.7, pp.072510
Abstract
The stability and resonant field response of current driven resistive wall modes are numerically studied for DIII-D [J. L. Luxon, Nucl. Fusion 42, 614 (2002)] low pressure plasmas. The resonant field response of the feedback-stabilized resistive wall mode is investigated both analytically and numerically, and compared with the response from intrinsically stable or marginally stable modes. The modeling qualitatively reproduces the experimental results. Furthermore, based on some recent results and on the indirect numerical evidence in this work, it is suggested that the mode stability behavior observed in DIII-D experiments is due to the kink-peeling mode stabilization by the separatrix geometry. The phase inversion radius of the computed plasma displacement does not generally coincide with the radial locations of rational surfaces, also supporting experimental observations.
Publisher
AMER INST PHYSICS
ISSN
1070-664X

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