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Comparison of electrostatic and electromagnetic synchronization of drift waves and suppression of drift wave turbulence in a linear device

C Brandt, O Grulke, T Klinger2010年Plasma Physics and Controlled FusionIF 2.2出版社

Experiments in a cylindrical magnetized plasma on the control of drift waves by means of two different spatiotemporal open-loop control systems—an electrostatic and an electromagnetic exciter—are reported. The drift wave dynamics is controlled by a mode-selective signal created with azimuthal arrangements of eight electrodes and eight saddle coils, respectively. Nonlinear interaction between the control signals and drift waves is observed, leading to synchronization of coherent drift waves and suppression of broadband drift wave turbulence. The cross-phase between density and potential fluctuations reduces from ≈π/2 in turbulence to ≈0 in controlled turbulence. Hence, the cross-field transport is reduced to the level of coherent drift waves. For both control systems the coupling to the drift wave can be ascribed to the drive of parallel currents, on the one hand via direct electric contact and, on the other hand, via electromagnetic induction.

日本語訳

円筒状の磁化プラズマにおいて、静電的励起器と電磁的励起器という2つの異なる時空間開ループ制御系によるドリフト波の制御に関する実験について報告する。ドリフト波のダイナミクスは、それぞれ8個の電極と8個の鞍型コイルの方位角配置によって生成されるモード選択信号により制御される。制御信号とドリフト波の間の非線形相互作用が観測され、コヒーレントなドリフト波の同期と、広帯域ドリフト波乱流の抑制がもたらされる。密度と電位の変動間のクロス位相は、乱流状態の≈π/2から、制御された乱流状態の≈0へと減少する。これにより、クロスフィールド輸送はコヒーレントなドリフト波のレベルまで低減される。両方の制御系において、ドリフト波への結合は、一方では直接的な電気的接触による、他方では電磁誘導による、平行電流の駆動に帰することができる。

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Drift wavesDrift wave turbulence
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