ICRF HEATING EXPERIMENTS ON JIPP T-II
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概要
- 論文の詳細を見る
Data of JIPP T-II ICRF heating experiments are presented. The experiment covers three typical cases : the low concentration hydrogen minority case, the high concentration hydrogen minority case, and the ^3He minority case. The best heating efficiency is obtained for the ^3He-minority case. It is shown through power balance analysis that the two H-minority cases are different in the wave energy deposition profile. The difference is explained by the presence of local cavity mode for the high concentration minority case. The ion temperature stops rising at the power density level of 0.65 W/cm^3. An analytic solution of the Fokker-Planck equation is derived to interpret the deterioration of heating efficiency.
- 核融合科学研究所の論文
著者
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Toi K.
Research Information Center Institute Of Plasma Physics Nagoya University
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AOKI T.
Research Information Center, Institute of Plasma Physics, Nagoya University
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HIDEKUMA S.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Aoki T.
Research Information Center Institute Of Plasma Physics Nagoya University
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Ogawa I.
Research Center for Development of Far Infrared Region, University of Fukui
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Tetsuka T.
Research Information Center Institute Of Plasma Physics Nagoya University
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Tanaka S.
Biol. Lab. Nippon Med. Schl.
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Kawahata K.
Research Information Center Institute Of Plasma Physics Nagoya University
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Hiroe S.
Research Information Center Institute Of Plasma Physics Nagoya University
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WATARI T.
Research Information Center, Institute of Plasma Physics, Nagoya University
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FUJITA J.
Research Information Center, Institute of Plasma Physics, Nagoya University
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HIROKURA S.
Research Information Center, Institute of Plasma Physics, Nagoya University
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KAKO E.
Research Information Center, Institute of Plasma Physics, Nagoya University
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KAWASUMI Y.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Noda N.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Ohkubo K.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Tanahashi S.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Nishizawa A.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Kako E.
Research Information Center Institute Of Plasma Physics Nagoya University:national Laboratory For Hi
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Kawasumi Y.
Research Information Center Institute Of Plasma Physics Nagoya University
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Sasao M.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Shinohara S.
Department Of Physics University Of Tabriz
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Ichimura M.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Ono Y.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Shinohara S.
Research Information Center, Institute of Plasma Physics, Nagoya University
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Hirokura S.
Research Information Center Institute Of Plasma Physics Nagoya University
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Noda N.
Research Information Center Institute Of Plasma Physics Nagoya University
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Fujita J.
Research Information Center Institute Of Plasma Physics Nagoya University
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Watari T.
Institute Of Plasma Physics Nagoya University
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Sasao M.
Research Information Center Institute Of Plasma Physics Nagoya University
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Watari T.
Research Information Center Institute Of Plasma Physics Nagoya University
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Osanai Y.
Research Information Center Institute Of Plasma Physics Nagoya University
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Tanahashi S.
Research Information Center Institute Of Plasma Physics Nagoya University
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Ichimura M.
Research Information Center Institute Of Plasma Physics Nagoya University
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Ohkubo K.
Research Information Center Institute Of Plasma Physics Nagoya University
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Ogawa I.
Research Information Center Institute Of Plasma Physics Nagoya University
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Okubo Y.
Institute Of Plasma Physics Nagoya University
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