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Mhd Induced Neutral Beam Ion Loss From Nstx Plasmas

机译:Mhd引起Nstx等离子体的中性束离子损失

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Bursts of ~ 60 kHz activity on Mimov coils, identified as energetic particle modes, occur frequently in NSTX plasmas and these are accompanied by bursts of neutral beam ion loss over a range in pitch angles. These losses have been measured with a scintillator type loss probe imaged with a high speed (> 10 000 frames s~(-1)) video camera, giving the evolution of the energy and pitch angle distributions of the lost neutral beam ions over the course of the events. The instability occurs below the TAE frequency in NSTX (~ 100 kHz) in high beta plasmas and may also be identified as a beta-induced Alfven acoustic (BAAE) mode.rnThe data from one burst that causes a 13% reduction in the neutron rate have been studied extensively and have several interesting features. First, the burst begins with the mode having a purely n = 1 character, sweeping downwards in frequency. However, there is no change to the underlying loss signal during this time interval. This indicates there is no phase space transport of fast (80 keV D) ions into the loss cone seen by the probe from the frequency sweeping. As the burst evolves further in time, a concurrent n = 2 mode arises, followed quickly by a concurrent n = 3 mode. During this period when multiple modes are present, loss over a wide range of pitch angles is seen simultaneously, suggesting stochastization of the beam ion phase space. There is no evidence of any sweeping in pitch angle of the loss in either phase of the burst, at least not on the 100μs time scale.
机译:在NSTX等离子体中,Mimov线圈上的〜60 kHz活性爆发频繁发生,被认为是高能粒子模式,并且伴随着在一定的俯仰角范围内中性束离子损失的爆发。这些损耗已通过闪烁器型损耗探头进行了测量,该探头由高速(> 10000帧s〜(-1))摄像机成像,从而给出了整个过程中损耗的中性束离子的能量和俯仰角分布的演变情况的事件。在高β等离子体中,不稳定性发生在NSTX(〜100 kHz)的TAE频率以下,也可能被识别为β诱导的Alfven声学(BAAE)模式。rn一次爆发的数据导致中子速率降低13%。已经进行了广泛的研究,并具有一些有趣的功能。首先,脉冲串从纯粹具有n = 1个字符的模式开始,频率向下扫描。但是,在此时间间隔内,基础损耗信号没有变化。这表明从频率扫描中可以看出,探针没有看到快速(80 keV D)离子进入损耗锥的相空间传输。随着脉冲串在时间上的进一步发展,出现了并发的n = 2模式,随后迅速出现了并发的n = 3模式。在此期间,当出现多种模式时,会同时看到宽俯仰角范围内的损耗,这表明束离子相空间的随机化。没有证据表明,至少在100μs的时间尺度上,脉冲的任一相中损失的俯仰角都没有任何变化。

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