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Studies on impact of electron cyclotron wave injection on the internal transport barriers in JT-60U weak shear plasmas

S. Ide, H. Takenaga, A. Isayama, Y. Sakamoto, M. Yoshida, C. Gormezano2007年被引用 12Nuclear FusionIF 3出版社

Impact of the electron cyclotron range of frequency wave (ECRF) on the internal transport barriers (ITBs) in a weak shear (WS) plasma has been investigated in JT-60U. The fundamental O-mode ECRF of 110 GHz injected obliquely (co-current drive) from the low field side is used. It is observed that the ion temperature (Ti) ITB in a WS plasma can be degraded by ECRF. It is clarified for the first time that the degradation depends increasingly on the EC power (PEC) but decreasingly on the plasma current (Ip). Moreover it is confirmed that ECRF affects the toroidal rotation (Vt) indirectly and results in the flattening of Vt(ρ) and therefore the radial electric field (Er) profiles regardless of the direction of the target Vt(ρ), peaking co or counter direction (relative to the Ip direction). Furthermore, it is recently found that Ti and Vt in the whole ITB region are affected with almost no delay from the EC onset even with off-axis EC deposition. These results indicate that EC injection unveiled a semi-global structure that characterizes Ti ITB in a WS plasma.

日本語訳

弱い磁気シア(WS)プラズマにおける内部輸送障壁(ITB)に及ぼす電子サイクロトロン周波数帯波(ECRF)の影響について、JT-60Uで調査した。低磁場側から斜め入射(コ・カレント駆動)される110 GHzの基本OモードECRFを用いた。WSプラズマ中のイオン温度(Ti)ITBがECRFによって劣化し得ることが観測された。この劣化は、ECパワー(PEC)に依存して増大する一方、プラズマ電流(Ip)に依存して減少することが、初めて明らかにされた。さらに、ECRFはトロイダル回転(Vt)に間接的に影響を及ぼし、対象とするVt(ρ)の方向(Ip方向に対してコ方向またはカウンター方向)にかかわらず、Vt(ρ)およびそれに伴う動径電場(Er)分布の平坦化を引き起こすことが確認された。さらに最近では、オフセットのEC堆積であっても、EC開始からほぼ遅延なくITB領域全体のTiとVtに影響が及ぶことが見出された。これらの結果は、EC入射がWSプラズマにおけるTi ITBを特徴付ける半全球的構造を明らかにしたことを示している。

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JT-60UTransport barrierInternal transport barrierCyclotron waveElectron cyclotron wave
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