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Fast excitation of EG AM by NBI

机译:NBI快速激发EG AM

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A new mechanism for the fast excitation of the energetic geodesic acoustic mode (EGAM) is proposed to explain the recent experiment in DIII-D (Nazikian et al 2008 Phys. Rev. Lett. 101 185001), where the mode turns on in less than a millisecond after the turn-on of the neutral beam injection. The existence of loss boundary in pitch angle when beam particles are injected counter to the plasma current is crucial to the formation of negative energy EGAM mode. The resonance of this negative energy wave with energetic particles, whose distribution decreases with energy, destabilizes the mode. We find that when there is a loss region, the onset time of instability can be significantly shorter than it would be if the injected particles had no loss region.
机译:提出了一种用于快速激发高能测地声模式(EGAM)的新机制,以解释DIII-D中的最新实验(Nazikian等人,2008 Phys。Rev. Lett。101 185001),该模式在小于打开中性束注入后的一毫秒。当束流粒子逆着等离子体电流注入时,桨距角中存在损耗边界对于形成负能量EGAM模式至关重要。负能量波与高能粒子的共振,高能粒子的分布随能量而减小,从而使该模式不稳定。我们发现,当存在损失区域时,不稳定性的开始时间可以比注入的粒子没有损失区域时的时间短得多。

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