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Event Studies of O~+ Density Variability Within Quiet-Time Plasma Sheet

机译:事件研究O ~ +内密度变化安静的时间等离子体片

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摘要

To understand the variations of the O~+ ions in the quiet-time plasma sheet between the regions of cold-dense plasma sheet (CDPS) and hot plasma sheet (HPS), we conduct three event studies. These studies investigate the O~+ densities in the two regions and how they are correlated with the strength of two magnetospheric sources important to ion outflows: the soft electron flux and Poynting flux toward the ionosphere. The CDPS is characterized by two-component ions (one hot component mixed with one cold component), while the HPS ions consist of only one single hot component. Comparing the O~+ density between the CDPS and HPS of the same event, the average CDPS O~+ density was higher by a factor of ~2-5. Compared to the HPS, the soft electron flux source within the CDPS was higher, consistent with the fact that the soft electron precipitation and O~+ upward number fluxes observed in the ionosphere were also higher within the CDPS. In the plasma sheet, broadband ultralow-frequency electric and magnetic field waves with the characteristics of kinetic Alfvén waves were often more intense within the CDPS, providing a stronger Poynting flux source. In addition, electron resonant interaction with kinetic Alfvén waves results in acceleration along the magnetic fields and, thus, may drive the observed soft electron precipitation. These correlations suggest that the higher soft electron precipitation and Poynting flux coming from the magnetospheric CDPS likely produce larger ionospheric O~+ outflows back to the magnetosphere, thus resulting in the higher O~+ density within the CDPS.
机译:理解O ~ +离子的变化安静的时间等离子体片之间的地区低温高密度等离子体的表(cdp)和热等离子体表(HPS),我们开展三项活动的研究。这些研究调查O ~ +密度这两个地区,他们是如何相关的两个磁性层的来源的力量重要的离子外流:软电子通量对电离层和能流密度通量。特点是双组分离子(一个炎热吗组件与一个寒冷的混合组件)HPS离子包括只有一个单一的热组件。cdp和HPS相同的事件,平均cdpO ~ +密度更高的~ 2 - 5倍。HPS相比,软电子通量源在cdp较高,一致与软电子降水和O ~ +上升通量在电离层也更高cdp内。超低频电场和磁场波与动力学阿尔芬的特点波在cdp往往更强烈,提供一个更强的能流密度通量来源。此外,电子共振相互作用动力学阿尔芬波加速度沿着磁场,从而可能开车观察到的软电子降水。相关性表明,软就越高电子降水和坡印亭通量从磁性层的cdp可能产生较大的电离层O ~ +流出回磁气圈,从而导致更高的O ~ +cdp密度。

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