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Off-resonance effects on electrons in mirror-contained plasmas

R.A. Dandl, H.O. Eason, P.H. Edmonds, A.C. England1971年被引用 64Nuclear FusionIF 3出版社

Resonant heating by microwave power has been used to produce high β plasmas with electron temperatures near 1 MeV. Typically plasmas are produced with ωpe∼ωce. Further experimental heating studies described here have shown that a large increase in stored plasma energy is produced by microwave power with a frequency higher than the cold-electron resonance frequency. This increase, caused by off-resonance heating, is attributed both to stochastic heating and to the control of an instability through changes in the electron distribution function. Alternatively, a decrease in the stored plasma energy is produced by microwave power at a frequency below the cold-electron resonance frequency. This effect is attributed in part to enhanced diffusion into the loss cone. However, a small fraction of the plasma is heated to high energies.

日本語訳

マイクロ波パワーによる共鳴加熱は、電子温度が1 MeV近くの高βプラズマを生成するために使用されてきた。典型的には、プラズマはωpe∼ωceで生成される。ここで述べるさらなる実験的加熱研究により、冷電子共鳴周波数よりも高い周波数のマイクロ波パワーによって、蓄積プラズマエネルギーの大きな増加が生じることが示された。オフ共鳴加熱によって引き起こされるこの増加は、確率加熱と、電子分布関数の変化による不安定性の制御の両方に起因する。あるいは、冷電子共鳴周波数よりも低い周波数のマイクロ波パワーによって、蓄積プラズマエネルギーの減少が生じる。この効果は、損失円錐への拡散の増強に一部起因する。しかしながら、プラズマのごく一部は高エネルギーまで加熱される。

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