Electron Density Profile Behavior during SMBI Measured with AM Reflectometer in Heliotron J Plasma
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概要
- 論文の詳細を見る
The electron density profile was measured using a microwave amplitude modulation (AM) reflectometer in Heliotron J plasmas, where plasma performance was improved using supersonic molecular beam injection (SMBI) as a fueling method. Immediately after the SMBI pulse, for the case in which the supersonic molecular beam penetrates deeply, the density profile rapidly peaks, and the electron density increases in both core and edge regions. Afterward, while the line-averaged electron density is monotonically increasing, the density profile becomes more peaked. In this phase, the edge electron density measured by a Langmuir probe decreases and the peaking factor of the SX profiles measured by an absolute extreme ultraviolet array increases. These trends are consistent with the electron density trend determined by the AM reflectometer. SMBI affects particle confinement and transport, thus possibly increasing plasma stored energy.
著者
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Mizuuchi Tohru
Institute Of Advanced Energy Kyoto University
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Hanatani Kiyoshi
Institute Of Advanced Energy Kyoto University
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NAGASAKI Kazunobu
Institute of Advanced Energy, Kyoto University
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OKADA Hiroyuki
Institute of Advanced Energy, Kyoto University
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Nakamura Yuji
Graduate School Of Energy Science Kyoto University
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Mizuno Koji
Graduate School Of Engineering Nagoya University
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Yamamoto Satoshi
Institute For Sea Training
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Kobayashi Shinji
Institute Of Advanced Energy Kyoto Univ.
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Takeuchi Masaki
Institute Of Health Biosciences The University Of Tokushima Graduate School
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MINAMI Takashi
Institute of Advanced Energy, Kyoto University, Gokasho, Uji 611-0011, Japan
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MUKAI Kiyofumi
Graduate School of Energy Science, Kyoto University, Kyoto 611-0011 , Japan
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LEE Hyunyong
Graduate School of Energy Science, Kyoto University, Kyoto 611-0011 , Japan
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SANO Fumimichi
Institute of Advance Energy, Kyoto University
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KONOSHIMA Shigeru
Institute of Advanced Energy, Kyoto University, Gokasho, Uji 611-0011, Japan
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ZHURAVLEV Vladimir
RRC "Kurchatov Institute", Institute of Nuclear Fusion, Moscow 123182, Russia
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OHSHIMA Shinsuke
Pioneering Research Unit for Next Generation, Kyoto University, Gokasho, Uji 611-0011, Japan
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FUKUDA Takeshi
Center for Atomic and Molecular Technologies, Osaka University, 2-1 Yamadaoka, Suita 565-0871, Japan
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ZHURAVLEV Vladimir
RRC "Kurchatov Institute", Institute of Nuclear Fusion, Moscow 123182, Russia
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MIZUNO Koji
Graduate School of Energy Science, Kyoto University, Gokasho, Uji 611-0011, Japan
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OHSHIMA Shinsuke
Pioneering Research Unit for Next Generation, Kyoto University
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HANATANI Kiyoshi
Institute of Advanced Energy, Kyoto University, Gokasho, Uji 611-0011, Japan
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MINAMI Takashi
Institute of Advanced Energy, Kyoto University
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NAGASAKI Kazunobu
Institute of Advance Energy, Kyoto University
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LEE Hyunyong
Graduate School of Energy Science, Kyoto University
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LEE Hyunyong
Graduate School of Energy Science, Kyoto University, Gokasho, Uji 611-0011, Japan
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MUKAI Kiyofumi
Graduate School of Energy Science, Kyoto University
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MUKAI Kiyofumi
Graduate School of Energy Science, Kyoto University, Gokasho, Uji 611-0011, Japan
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MIZUUCHI Tohru
Institute of Advance Energy, Kyoto University
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TAKEUCHI Masaki
Institute of Advanced Energy, Kyoto University, Gokasho, Uji 611-0011, Japan
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KONOSHIMA Shigeru
Institute of Advanced Energy, Kyoto University
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OKADA Hiroyuki
Institute of Advance Energy, Kyoto University
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KOBAYASHI Shinji
Institute of Advance Energy, Kyoto University
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