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COMPARISON OF TWO-FLUID AND GYROKINETIC MODELS FOR KINETIC ALFVéN WAVES IN SOLAR AND SPACE PLASMAS

机译:太阳能和空间等离子体中的动力学阿尔文波的两种流体动力学模型和动力学模型的比较

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摘要

An analytical comparative study of a two-fluid and a gyrokinetic model of kinetic Alfvén waves (KAWs) is presented for various solar and space plasma environments. Based on the linear KAW dispersion relation for gyrokinetics (Howes et al. 2006), the wave group velocity and electromagnetic polarizations are obtained analytically. Then the gyrokinetic wave properties are compared with those of the two-fluid model. The results show that both models agree well with each other not only in the long wavelength regime ( the ion gyroradius ρ i ) for all cases considered, but also in wavelengths ~ρ i and ρ i (still much larger than the electron gyroscale) for a moderate or low ( 1) and a high (1) ion/electron temperature ratio T 0i /T 0e , respectively. However, the fluid model calculations deviate strongly from the gyrokinetic model at scales ρ i for a relatively low T 0i /T 0e due to the electron gyroradius effect. Meanwhile, the plasma β i can make the gyrokinetic dispersion relation of KAWs become complex and sometimes have an oscillation-like structure. With the inherent simplicity of the fluid theory, these results may improve our understanding of the applicability of the two-fluid model, and may have important implications for computer simulation studies of KAWs in the solar and space plasma surroundings.
机译:提出了针对各种太阳和空间等离子体环境的动力学Alfvén波(KAW)的双流体模型和动力学模型的分析比较研究。基于陀螺动力学的线性KAW色散关系(Howes等,2006),可以解析地获得波群速度和电磁极化。然后将回旋波特性与双流体模型的特性进行比较。结果表明,两个模型不仅在所有情况下都在长波长范围内(离子陀螺半径ρi)彼此吻合,而且在〜ρi和ρi波长(仍远大于电子陀螺刻度)上彼此吻合。离子/电子温度比T 0i / T 0e分别为中等或低(1)和高(1)。但是,由于电子陀螺半径效应,流体模型计算在相对较低的T 0i / T 0e相对于<ρi的范围内,相对于陀螺动力学模型有很大的偏差。同时,等离子体βi可以使KAWs的旋转动力学色散关系变得复杂,并且有时具有振荡状结构。凭借流体理论的固有简单性,这些结果可能会增进我们对双流体模型适用性的理解,并且可能对太阳和空间等离子体环境中的KAW的计算机仿真研究具有重要意义。

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