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ALFVEN CYCLOTRON INSTABILITY AND ION CYCLOTRON EMISSION

机译:零回旋不稳定和离子回旋排放

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摘要

Two-dimensional solutions of compressional Alfven eigenmodes (CAEs) are studied in the cold plasma approximation. For finite inverse aspect ratio tokamak plasmas the two-dimensional eigenmode envelope is localized at the low magnetic field side with the radial and poloidal localization on the order of a/m~(1/2) and a/~4 m~(1/2), respectively, where m is the dominant poloidal mode number. Charged fusion product driven Alfven cyclotron instability (ACI) of the compressional Alfven eigenmodes provides the explanation for the ion cyclotron emission (ICE) spectrum observed in tokamak experiments. The ACI is excited by fast charged fusion products via Doppler shifted cyclotron wave-particle resonances. The ion cyclotron and electron Landau dampings and fast particle instability drive are calculated perturbatively for deuterium-deuterium (DD) and deuterium-tritium (DT) plasmas. Near the plasma edge at the low field side the velocity distribution function of charged fusion products is localized in both pitch angle and velocity. The poloidal localization of the eigenmode enhances the ACI growth rates by a factor of m~(1/2) in comparison with the previous results without poloidal envelope. The thermal ion cyclotron damping determines that only modes with eigenfrequencies at multiples of the edge cyclotron frequency of the background ions can be easily excited and form an ICE spectrum similar to the experimental observations. Theoretical understanding is given for the results of TFTR DD and DT experiments with v_(α0)/v_A approx = 1 and JET experiments with v_(α0)/v_A > 1.
机译:在冷等离子体近似中研究了压缩Alfven本征模式(CAE)的二维解。对于有限的反长宽比托卡马克等离子体,二维本征模包络位于低磁场一侧,其径向和倍性定位为a / m〜(1/2)和a /〜4 m〜(1 / 2),其中m是主要的极性模数。带电聚变产物驱动的Alfven本征模本征模式的Alfven回旋不稳定性(ACI)为托卡马克实验中观察到的离子回旋加速器发射(ICE)光谱提供了解释。快速充电的聚变产物通过多普勒频移回旋加速器波-粒子共振激发了ACI。对于氘-氘(DD)和氘-tri(DT)等离子体,扰动地计算了离子回旋加速器和电子Landau阻尼以及快速粒子不稳定性驱动。在低场侧的等离子边缘附近,带电聚变产物的速度分布函数位于俯仰角和速度上。与以前没有倍体包络的结果相比,本征模的倍体定位将ACI的生长速度提高了m〜(1/2)倍。热离子回旋加速器阻尼确定仅具有本征频率在背景离子的边缘回旋加速器频率倍数处的模式才能被轻易激发并形成类似于实验观察的ICE谱。对TFTR DD和DT实验在v_(α0)/ v_A大约= 1时和JET实验在v_(α0)/ v_A> 1时的结果给出了理论理解。

著录项

  • 来源
    《Nuclear fusion》 |1995年第12期|p.1743-1752|共10页
  • 作者

    N.N. GORELENKOV; C.Z. CHENG;

  • 作者单位

    Princeton Plasma Physics Laboratory, Princeton University, Princeton, New Jersey, United States of America;

  • 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
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

  • 入库时间 2022-08-18 00:52:32

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