Cross-field Electron Heat Transport due to High Frequency Electrostatic Waves

H. Naitou
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引用次数: 3

Abstract

Cross-field electron heat diffusion due to thermally excited high frequency electrostatic waves propagating almost perpendicular to the magnetic field is studied using a 2–1 /2-dimensional simulation code. It is shown that the electron heat diffusion coefficient D H is an order of magnitude greater than the electron particle diffusion coefficient D p , which is essentially collisional. The characteristic feature of wave transport is observed, namely an increase of D H with increasing values of the characteristic temperature scale length L x . The heat diffusion coefficients D // H and D ⊥ H for the parallel and perpendicular temperatures ( D H ≃ D // H + D ⊥ H ) show quite different magnetic field scalings since D // H is due to ion modes while D ⊥ H arises from electron modes. This is also confirmed by treating the ions as an immobile background.
高频静电波的跨场电子热输运
利用2-1 /2维仿真程序研究了热激发高频静电波几乎垂直于磁场传播时的跨场电子热扩散问题。结果表明,电子热扩散系数dh比电子粒子扩散系数dp大一个数量级,本质上是碰撞的。观察到波输运的特征特征,即随着特征温标长度L x值的增加,D H增加。平行温度和垂直温度(D H≃D // H + D⊥H)的热扩散系数D // H和D // H显示出完全不同的磁场标度,因为D // H是由离子模式引起的,而D // H是由电子模式引起的。这也可以通过将离子作为不移动的背景来证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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