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The modification of the plasma edge and impurity production by antenna phasing during ICRF heating on JET

M Bures, H Brinkschulte, J Jacquinot, K D Lawson, A Kaye, J A Tagle1988年Plasma Physics and Controlled FusionIF 2.2出版社

During r.f. experiments on JET a strong modification of the plasma edge is generally observed. Density and temperature profiles in the scrape-off layer usually flatten and enhanced impurity and neutral influx is observed. Metallic impurity influx originating from antennae screens is also observed. This is especially true when the antennae are phased so that the excited spectrum contains a large fraction of power in the waves with k/sub ///=0-3 m-1. A radially localized enhancement of the particle diffusivity Dperpendicular to (a) across the plasma edge results. When the antennae are phased in the quadrupole configuration with the maximum power emitted at k/sub ///=7 m-1 a strong modification of the edge is not observed. The scrape-off layer profiles scale as in the ohmic discharges. Then both the light and metal impurity influxes become substantially reduced.

日本語訳

JETにおけるRF加熱実験中に、プラズマ端部の強い変調が一般的に観測される。スクレイプオフ層における密度および温度プロファイルは通常平坦化し、不純物および中性粒子の流入の増大が観測される。アンテナスクリーンに由来する金属不純物の流入も観測される。これは、励起されたスペクトルがk//=0〜3 m⁻¹の波に大きな電力割合を含むようにアンテナの位相が調整されている場合に特に顕著である。プラズマ端部を横切る粒子拡散係数D⊥の径方向に局在した増大が生じる。アンテナが四重極配置で位相調整され、最大電力がk//=7 m⁻¹で放出される場合、端部の強い変調は観測されない。スクレイプオフ層のプロファイルはオーミック放電の場合と同様にスケーリングする。この場合、軽不純物および金属不純物の流入はともに大幅に減少する。

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JETImpurityIon cyclotron heating
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