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Co-existence of whistler waves with kinetic Alfven wave turbulence for the high-beta solar wind plasma

机译:高β太阳风等离子体的惠斯勒波与动力学Alfven波湍流并存

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摘要

It is shown that the dispersion relation for whistler waves is identical for a high or low beta plasma. Furthermore, in the high-beta solar wind plasma, whistler waves meet the Landau resonance with electrons for velocities less than the thermal speed, and consequently, the electric force is small compared to the mirror force. As whistlers propagate through the inhomogeneous solar wind, the perpendicular wave number increases through refraction, increasing the Landau damping rate. However, the whistlers can survive because the background kinetic Alfven wave (KAW) turbulence creates a plateau by quasilinear (QL) diffusion in the solar wind electron distribution at small velocities. It is found that for whistler energy density of only ~10 ~(-3) that of the kinetic Alfven waves, the quasilinear diffusion rate due to whistlers is comparable to KAW. Thus, very small amplitude whistler turbulence can have a significant consequence on the evolution of the solar wind electron distribution function.
机译:结果表明,对于高或低β等离子体,惠斯勒波的色散关系相同。此外,在高贝塔数的太阳风等离子体中,惠斯勒波与电子的朗道共振相遇,其速度小于热速度,因此,与镜面力相比,其力较小。当吹口哨通过不均匀的太阳风传播时,垂直波数会通过折射而增加,从而提高Landau的阻尼率。但是,由于背景动力学Alfven波(KAW)湍流在小速度下通过准线性(QL)扩散在太阳风电子分布中产生了平稳状态,因此吹口哨者得以幸免。研究发现,当哨声能量密度仅为动力学阿尔夫文波的〜10〜(-3)时,由于哨声引起的准线性扩散率与KAW相当。因此,非常小幅度的惠斯勒湍流会对太阳风电子分布函数的演变产生重大影响。

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