Characteristics of off-axis sawteeth with an internal transport barrier in EAST

An internal transport barrier (ITB) and double tearing modes (DTM) have been observed during the off-axis sawteeth in EAST. The ITB of electron temperature Te is modulated by the sawteeth oscillation, and the formation of an ITB can be divided into three stages: (i) the transport produced by a sawte...

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Veröffentlicht in:Nuclear fusion 2019-08, Vol.59 (8), p.84005
Hauptverfasser: Xu, Ming, Zhao, H.L., Zang, Q., Zhong, G.Q., Xu, L.Q., Liu, H.Q., Chen, W., Huang, J., Hu, L.Q., Xu, G.S., Gong, X.Z., Qian, J.P., Liu, Y., Zhang, T., Zhang, Y., Sun, Y.W., Zhang, X.D., Wan, B.N.
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Sprache:eng
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Zusammenfassung:An internal transport barrier (ITB) and double tearing modes (DTM) have been observed during the off-axis sawteeth in EAST. The ITB of electron temperature Te is modulated by the sawteeth oscillation, and the formation of an ITB can be divided into three stages: (i) the transport produced by a sawteeth final crash is suppressed at the first stage with a steep gradient of Te; (ii) the micro-instability is developed at the second stage for further increasing the gradient of Te; (iii) the ITB is formed eventually after the transition from beta-induced Alfvén eigenmodes (BAEs) to reversed shear Alfvén eigenmodes (RSAEs), where the BAEs-RSAEs pair enables the tracking of directly from the experiment. The off-axis sawteeth final crash is triggered by DTM: (i) the DTM can be excited by the redistribution of the profile of thermal particles, where the downward transport of energetic ions is detected indirectly by the soft x-ray arrays for the first time; (ii) the DTM can be excited by the transformation from the kink instability.
ISSN:0029-5515
1741-4326
DOI:10.1088/1741-4326/ab2686