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首页> 外文期刊>Journal of Plasma Physics >Generalized Case-van Kampen modes in a multidimensional non-uniform plasma with application to gyroresonance heating
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Generalized Case-van Kampen modes in a multidimensional non-uniform plasma with application to gyroresonance heating

机译:在多维非均匀等离子体中的广义案例 - van kampen模式,其应用于Gyrorsonance加热

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摘要

The generalization of the Case-van Kampen analysis to a multidimensional non-uniform plasma is presented. Application of this analysis is made to minority-ion gyrorcsonant heating in an axiaymmetric tokamak. In previous work the (Jaue-van Kampen analysis, in conjunction with the Baternan-Kruskal algorithm, was used in a one-dimensional slab model to compute the collective wave spin-off (to the minority-ion Bernstein wave) and the gyroballistic continuum for minority gyroresonant absorption. The generalization to many dirmmmonH and non-trivial geometries requires several important new developments: In tokamak geometry particles can be trapped, an effect that is absent in the slab model. Also, the ray propagation dynamics for both the free gyroballiHtic waves and the collective minority-ion Bernstein wave is far more complicated than in the slab model. In particular, a resonance zone is identified wherein the gyroballiatic waves interact strongly and cannot be treated as free. We use the Weyl calculus to construct a local form of the self-consistent gyroballi.stic equation within the resonance zone. This reduced equation is Himplintnl via a metaplectic transformation (a generalization of the Fourier transformation). After this simplification, the equation is shown to be of (lane-van Kampen type with weak non-uniformities; hence there are no true Oase-van Kampen eigenfunctions. Using the Bateman-Kruskal approach, a local (awe-van Kampen basis can be constructed and the initial-value problem solved. The self-consistent interactions of the gyroballistic continuum lead to a collective wave, the minority-ion Bernstein wave. The Bernstein wave is extracted by the spectral deformation approach of Crawford and Hislop. The relevance of this work to the theory of collective phenomena, in nonlinear oscillator ensembles is briefly discussed.
机译:提出了案例 - van kampen分析对多维非均匀等离子体的泛化。该分析的应用是在AXIAMMEMMETCOMMMETCOMAK中的少数离子戈尔逊人加热。在以前的工作中(Jaue-van Kampen分析与Baternan-Kruskal算法结合使用,用于一维板式模型,以计算集体波分拆(到少数离子伯恩斯坦波)和Gyroballistic连续体对于少数群体的热竞争吸收。许多Dirmmmonh和非琐蝇几何形状的概括需要几个重要的新发展:在托卡马克几何粒子中可以被困,这是板坯模型中缺席的效果。此外,自由的Gyroballihtic的射线传播动态波浪和集体少数离子离子伯恩斯坦波比在板式模型中更复杂。特别地,鉴定了谐振区,其中陀洛尼亚波的强烈相互作用,不能自由处理。我们使用Weyl Calcume构建局部形式谐振区内的自我一致的Gyroballi.Stic方程。这种降低的等式是HimPlintNL通过肉形态转换(概括)傅里叶变换)。在这种简化之后,等式被显示为(Lane-van Kampen型,具有弱的非均匀性;因此没有真正的Oase-van Kampen Eigenfunctions。使用Bateman-Kruskal方法,当地(Awe-Van Kampen基础)被构造并解决了初始值问题。陀螺容器连续体的自我一致相互作用导致集体波,少数离子伯恩斯坦波。通过克劳福德和Hislop的光谱变形方法提取伯尔斯坦波。的相关性这项工作到集体现象理论,简要讨论了非线性振荡器集合。

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  • 来源
    《Journal of Plasma Physics》 |1996年第3期|共38页
  • 作者单位

    Physics Department College of William and Mary Williamsburg Virginia 23185 U. S. A.;

    Lawrence Berkeley National Laboratory Berkeley California 94720 U. S. A.;

    Lawrence Berkeley National Laboratory Berkeley California 94720 U. S. A.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

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