电子温度梯度不稳定引起的异常等离子体输运

S. Tokuda, T. Kamimura, Hiroshi Ito
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引用次数: 3

摘要

利用二维半粒子模拟程序研究了由电子温度不均匀性驱动的无碰撞漂移波不稳定性(电子温度梯度不稳定性)及其增强输运过程。模拟结果表明,相空间中的拟线性扩散是这种不稳定性饱和的重要机制。这种不稳定性产生了流向热等离子体区域的粒子通量。磁剪切稳定了不稳定性。然而,垂直于磁场的电子温度te⊥的导热系数并没有因为磁剪切而降低,而是保持在较高水平,而平行温度te //的导热系数则有效降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anomalous Plasma Transport due to Electron Temperature Gradient Instability
The collisionless drift wave instability driven by an electron temperature inhomogeneity (electron temperature gradient instability) and the enhanced transport processes associated with it are studied using a two-and-a-half dimensional particle simulation code. The simulation results show that quasilinear diffusion in phase space is an important mechanism for the saturation of this instability. The instability yields particle fluxes toward the hot plasma regions. The magnetic shear stabilizes the instability. However the heat conductivity of the electron temperature perpendicular to the magnetic field, T e⊥ , is not reduced by the magnetic shear but remains high, whereas the heat conductivity of the parallel temperature, T e// , is effectively reduced.
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