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Energetic particle-induced geodesic acoustic modes on DIII-D

D.J. Lin, W.W. Heidbrink, N.A. Crocker, X.D. Du, R. Nazikian, M.A. Van Zeeland, K. Barada2022年被引用 2Nuclear FusionIF 3出版社

Various properties of the energetic particle-induced geodesic acoustic mode (EGAM) are explored in this large database analysis of DIII-D experimental data. EGAMs are n = 0 modes with m = 0 electrostatic potential fluctuations (where n/m = toroidal/poloidal mode number), m = 1 density fluctuations, and m = 2 magnetic fluctuations. The fundamental frequency (∼20–40 kHz) of the mode is typically below that of the traditional geodesic acoustic mode frequency. EGAMs are most easily destabilized by beams in the counter plasma current (counter-Ip) direction as compared to co-Ip and off-axis beams. During counter beam injection, the mode frequency is found to have the strongest linear dependence (correlation coefficient r = −0.71) with the safety factor (q). The stability of the mode in the space of q and poloidal beta (βp) shows a clear boundary for the mode stability. The stability of the mode depends more strongly on damping rate than on fast-ion drive for a given injection geometry.

日本語訳

様々な高エネルギー粒子誘起測地線音響モード(EGAM)の特性が、DIII-D実験データのこの大規模データベース解析において探求される。EGAMは、m = 0の静電ポテンシャル揺動(ここでn/m = トロイダル/ポロイダルモード数)、m = 1の密度揺動、およびm = 2の磁気揺動を有するn = 0モードである。モードの基本周波数(∼20–40 kHz)は、典型的には従来の測地線音響モード周波数よりも低い。EGAMは、順方向プラズマ電流(co-Ip)およびオフアクシスビームと比較して、逆プラズマ電流(counter-Ip)方向のビームによって最も容易に不安定化される。逆方向ビーム入射中、モード周波数は安全係数(q)と最も強い線形依存性(相関係数r = −0.71)を示すことが見出される。qおよびポロイダルベータ(βp)の空間におけるモードの安定性は、モード安定性に対する明確な境界を示す。モードの安定性は、所与の入射ジオメトリに対して、高速イオンドライブよりも減衰率に強く依存する。

装置

diii-d高精度(タイトル一致)

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DIII-DEnergetic particlesAcoustic modeGeodesic acoustic mode
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