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Observation of global Alfven eigenmode avalanche events on the National Spherical Torus Experiment

机译:在国家球形环实验中观测全球Alfven本征模雪崩事件

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摘要

Instabilities excited by the fast-ion population on NSTX (Ono et al 2000 Nucl. Fusion 40 557) extend from low-frequency energetic particle modes (EPMs) at tens of kHz through toroidal Alfven eigenmodes (TAEs) in the range 50-150 kHz to global and compressional Alfven eigenmodes (GAE and CAE) in the frequency range 0.3-2.5 MHz, or roughly 0.1ω_(ci) to 0.7ω_(ci). The GAE instabilities exhibit complex non-linear behaviour, including onset of strong growth above an amplitude threshold. This is conjectured to occur when resonance regions in phase space start to overlap, resulting in enhanced rapid growth and redistribution of energetic particles, a process referred to as an 'avalanche' (Berk etal 1995 Nucl. Fusion 35 1661). The GAE are suppressed following the avalanche, suggesting depletion of the fast-ion population resonantly driving the modes, and in some instances the GAE bursts appear to trigger lower frequency TAE avalanches or EPMs, suggesting some significant redistribution of fast ions in phase space has occurred. These are the first reported observations of avalanching behaviour for an instability driven through the Doppler-shifted cyclotron resonance. This paper also provides internal measurements of GAE structure showing that the mode amplitude peaks towards the plasma core.
机译:由NSTX上的快离子种群激发的不稳定性(Ono等,2000 Nucl。Fusion 40557)从数十kHz的低频高能粒子模(EPM)扩展到50-150 kHz范围内的环形Alfven本征模(TAE)频率范围为0.3-2.5 MHz或大约0.1ω_(ci)至0.7ω_(ci)的全局和压缩Alfven本征模式(GAE和CAE)。 GAE不稳定性表现出复杂的非线性行为,包括超过幅度阈值的强烈增长的开始。据推测,当相空间中的共振区域开始重叠时,会发生这种情况,从而导致高能粒子的快速生长和重新分布增强,这一过程称为“雪崩”(Berk等人,1995 Nucl。Fusion 35 1661)。雪崩后,GAE被抑制,表明共振模式驱动的快离子总体耗尽,并且在某些情况下,GAE爆发似乎触发了较低频率的TAE雪崩或EPM,表明相空间中发生了快速离子的一些重大重新分布。 。这些是关于通过多普勒频移回旋加速器共振引起的不稳定性的雪崩行为的首次报道。本文还提供了GAE结构的内部测量结果,显示了模式振幅朝着等离子体核的峰值。

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  • 来源
    《Nuclear fusion》 |2012年第4期|p.043001.1-043001.10|共10页
  • 作者单位

    Princeton Plasma Physics Laboratory, Princeton, NJ 08543, USA;

    Princeton Plasma Physics Laboratory, Princeton, NJ 08543, USA;

    Princeton Plasma Physics Laboratory, Princeton, NJ 08543, USA;

    University of California, Los Angeles, CA 90095, USA;

    University of California, Los Angeles, CA 90095, USA;

    Princeton Plasma Physics Laboratory, Princeton, NJ 08543, USA;

    Princeton Plasma Physics Laboratory, Princeton, NJ 08543, USA;

    Princeton Plasma Physics Laboratory, Princeton, NJ 08543, USA;

    Princeton Plasma Physics Laboratory, Princeton, NJ 08543, USA;

    Nova Photonics, Princeton, NJ 08543, USA;

    Nova Photonics, Princeton, NJ 08543, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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