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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Statistical properties of low-frequency waves and ion beams in the plasma sheet boundary layer: Geotail observations
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Statistical properties of low-frequency waves and ion beams in the plasma sheet boundary layer: Geotail observations

机译:等离子体板边界层中低频波和离子束的统计特性:地尾观测

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摘要

Statistical properties of low-frequency (0.01–0.1 Hz) electromagnetic waves and their relations to ion distribution functions in “transition regions” from lobe to the plasma sheet, which include the plasma sheet boundary layer (PSBL) and boundary plasma sheet, are investigated based on 5-year data of the Geotail spacecraft observations in X GSM = [?31, ?15] and ∣Y GSM∣ < 5 R E . It is shown that the amplitude of the magnetic field fluctuations increases with increasing plasma β (the ratio of the plasma thermal pressure to the magnetic pressure), while the electric field amplitude decreases in high-β regions. These tendencies are consistent with a decrease of the local Alfvén velocity (V A ) in the transition region with increasing β. The statistical results also indicate that the low-frequency wave power has clear correlation with the energy flux of ion flows parallel to the magnetic field. If 10% of the beam energy is converted to the wave power, the ion beams could be the source of free energy of the large-amplitude electromagnetic waves. The estimated Poynting flux of the waves is distributed in the range from 1.0 × 10?6 to 5.6 × 10?2 mW/m2. The maximum Poynting flux is the same order of the pointing flux of Alfvén waves observed by the Polar spacecraft at altitudes of 4–7 R E , when mapped along converging magnetic field lines to the ionosphere at an altitude of 100 km. The good agreement of the Poynting fluxes is consistent with the idea that the low-frequency electromagnetic waves in the tail PSBL are the source of kinetic Alfvén waves in the high-latitude auroral regions. The results of partial moment calculations with data bins selected by careful eye inspection for each 12-s ion data during large-amplitude wave events show that in most of the events, the relative drift speed between cold-core and hot-beam ion components is below 2 V A , the density ratio of the cold-core to the hot-beam is typically a few tens of percent, and the beam component has a strong temperature anisotropy of T /T ⊥ ~ 0.44. The linear dispersion analysis using the observed distribution functions suggests the importance of the ion cyclotron anisotropy instability modified by the existence of cold-core ions for the generation of low-frequency large-amplitude electromagnetic waves in the PSBL.
机译:研究了低频(0.01–0.1 Hz)电磁波的统计特性及其与从波瓣到等离子体板的“过渡区域”中的离子分布函数的关系,包括等离子体板边界层(PSBL)和边界等离子体板基于X GSM = [?31,?15]和∣Y GSM∣ <5 RE的Geotail航天器观测的5年数据。结果表明,磁场波动的幅度随等离子体β(等离子体热压力与电磁压力之比)的增加而增加,而电场幅度在高β区域减小。这些趋势与过渡区域中局部Alfvén速度(V A)随β的增加而减小是一致的。统计结果还表明,低频波功率与平行于磁场的离子流的能量通量具有明显的相关性。如果将10%的束能转换为波功率,则离子束可能是大振幅电磁波的自由能来源。估计的波波因廷通量分布在1.0×10-6至5.6×10-2 mW / m2的范围内。当沿着会聚的磁力线映射到100 km高度的电离层时,最大Poynting通量与极地飞船在4-7 R E高度观察到的Alfvén波的指向通量相同。 Poynting通量的良好一致性与以下想法一致:尾部PSBL中的低频电磁波是高纬度极光区域中的动力学Alfvén波的源头。在大振幅波事件期间,通过仔细的眼睛检查为每个12-s离子数据选择数据仓的部分力矩计算结果表明,在大多数事件中,冷芯和热束离子组分之间的相对漂移速度为低于2 VA时,冷芯与热束的密度比通常为百分之几十,并且光束分量具有很强的温度各向异性T / T⊥〜0.44。使用观察到的分布函数进行的线性色散分析表明,由于冷核离子的存在而对离子回旋加速器各向异性的不稳定性的重要性对于在PSBL中产生低频大振幅电磁波具有重要意义。

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