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On the toroidal plasma rotations induced by lower hybrid waves

机译:关于低杂波引起的环形等离子体旋转

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A theoretical model is developed to explain the plasma rotations induced by lower hybrid waves in Alcator C-Mod. In this model, torodial rotations are driven by the Lorentz force on the bulk-electron flow across flux surfaces, which is a response of the plasma to the resonant-electron flow across flux surfaces induced by the lower hybrid waves. The flow across flux surfaces of the resonant electrons and the bulk electrons are coupled through the radial electric field initiated by the resonant electrons, and the friction between ions and electrons transfers the toroidal momentum to ions from electrons. An improved quasilinear theory with gyrophase dependent distribution function is developed to calculate the perpendicular resonant-electron flow. Toroidal rotations are determined using a set of fluid equations for bulk electrons and ions, which are solved numerically by a finite-difference method. Numerical results agree well with the experimental observations in terms of flow profile and amplitude. The model explains the strong correlation between torodial flow and internal inductance observed experimentally, and predicts both counter-current and co-current flows, depending on the perpendicular wave vectors of the lower hybrid waves.
机译:建立了理论模型来解释Alcator C-Mod中较低杂波引起的等离子体旋转。在此模型中,托仑旋转是由洛伦兹力在穿过通量表面的体电子流上驱动的,这是等离子体对由较低杂化波引起的穿过通量表面的共振电子流的响应。穿过共振电子和体电子的通量表面的流动通过共振电子引发的径向电场耦合,并且离子和电子之间的摩擦将环形动量从电子转移到离子。提出了一种改进的拟线性理论,该模型具有与回转相有关的分布函数,用于计算垂直共振电子流。使用用于体电子和离子的一组流体方程确定环面旋转,这些方程通过有限差分法进行数值求解。数值结果与流量分布和振幅方面的实验结果非常吻合。该模型解释了实验观察到的环流和内部电感之间的强相关性,并根据较低混合波的垂直波矢量预测了逆流和并流。

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