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Parametric decay in the edge plasma of ASDEX during fast wave heating in the ion cyclotron frequency range

R. Van Nieuwenhove, G. Van Oost, J.-M. Noterdaeme, M. Brambilla, J. Gernhardt, M. Porkolab1988年被引用 51Nuclear FusionIF 3出版社

Two types of parametric decay instabilities were observed in the scrape-off layer of ASDEX during hydrogen second harmonic heating, in a single as well as in a two ion species plasma. The first type was identified as decay into an ion Bernstein wave and an ion cyclotron quasi-mode, and the second as decay into an ion Bernstein wave and a low frequency electron quasi-mode. The parametric decay processes are due to the high electric fields near the fast wave antennas. Theoretical growth rate calculations predict a threshold for the electric fields near the antennas. In the relevant experiments the electric fields, estimated from a full-wave code, indeed exceeded the thresholds. These parametric decay processes, as well as the harmonics of the generator frequency also seen in the scrape-off layer, provide a mechanism that might contribute to the observed direct energy deposition in the edge plasma and to ICRF induced impurity production.

日本語訳

ASDEXにおける水素第二高調波加熱中のスクレイプオフ層において、単一イオン種プラズマおよび二イオン種プラズマの両方で、2種類のパラメトリック崩壊不安定性が観測された。第一のタイプはイオンバーンスタイン波とイオンサイクロトロン準モードへの崩壊として同定され、第二のタイプはイオンバーンスタイン波と低周波電子準モードへの崩壊として同定された。パラメトリック崩壊過程は、高速波アンテナ近傍の高電界に起因する。理論的な成長率計算により、アンテナ近傍の電界に対する閾値が予測される。関連する実験において、フル波コードから推定された電界は、実際にその閾値を超えていた。これらのパラメトリック崩壊過程は、スクレイプオフ層で観測された発生器周波数の高調波とともに、エッジプラズマにおける観測された直接エネルギー堆積およびICRF誘起不純物生成に寄与する可能性のあるメカニズムを提供する。

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asdex-upgrade高精度(タイトル一致)

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Fusion Advanced Studies TorusASDEXEdge plasmaWave heatingParametric decay
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