首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Quasi-stationary auroral patches observed at the South Pole Station
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Quasi-stationary auroral patches observed at the South Pole Station

机译:似稳观察到极光补丁南极站

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We present quasi-stationary auroral patches (QSAPs) observed by an all-sky imager at the South Pole Station (-74.3° CGLAT) on the dayside between ~0900 and ~1400 MLT. QSAPs appeared in a closed field line region where I(557.7 nm) I(630.0 nm) and each patch tends to preserve its form, luminosity, and location for up to several hours. The quasi-stationary nature of the QSAPs cannot be explained by the traditional role of the corotation electric field because the South Pole is located on the axis of Earth's rotation. The most plausible scenario is that a corotation electric potential, which dominates the convection potential, results in a trapping region of the magnetospheric cold plasmas. On the analogy of the formation of the plasmasphere, the trapping region would capture cold plasmas originated from the ionosphere and result in a locally enhanced plasma density (miniplasmasphere) that may lead to electron scattering through cyclotron wave-particle interactions. This circumstance may occur when the South Pole is located on a closed field line and the local electric potential is dominated by the corotation potential. QSAPs were also accompanied with periodic fluctuations in the Pc 5 range, which coincide closely with ground magnetic fluctuations. Assuming that the pulsation is associated with field line resonances, we could estimate the equatorial mass density of thermal plasmas, which gradually increased from 0.13 to 0.44 amu cm~(-3). The increase in the thermal plasma density would support the hypothesis that a miniplasmasphere exists, though further investigation is necessary to confirm it.
机译:我们现在的似稳极光补丁全天成像仪(QSAPs)观察到的南极站(-74.3°CGLAT)的光面~ 0900 ~ 1400匝之间。闭域地区我(557.7海里)我(630.0 nm),每个补丁会保护它形式,光度和位置数个小时。无法解释的传统角色顺转电场,因为南方杆位于地球自转轴心。最有可能的情况是,一个顺转电势,主导着对流的潜力,结果在一个陷阱磁层冷等离子体区域。类比的等离子体层的形成困地区将捕获冷等离子体起源于电离层和结果本地增强等离子体密度(miniplasmasphere)可能导致电子通过回旋散射波粒交互。南极坐落在一个封闭的领域和当地的电势为主顺转势。伴随着周期性的波动在个人电脑5范围,与地面紧密一致磁场的波动。脉动与领域有关共鸣,我们可以估计赤道质量逐渐热等离子体的密度从0.13增加到0.44 - 12厘米~(3)。热等离子体密度增加支持的假设miniplasmasphere存在,但进一步的研究是必要的确认它。

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