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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Relations between proton auroras, intense electric field, and ionospheric electron density depletion
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Relations between proton auroras, intense electric field, and ionospheric electron density depletion

机译:关系质子极光,强烈的电领域,电离层电子密度损耗

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摘要

A case study with simultaneous European Incoherent Scatter and optical auroral observations was conducted in order to determine characteristics of the magnetosphereionosphere coupling from the viewpoint of the electrodynamics in the ionosphere. Particularly focused on were the relationships between ionospheric electron density depletion, perpendicular electric fields, and proton auroras. Intense electron density depletion was observed in the E and F regions poleward and in the vicinity of a thin equatorward moving arc. This depletion was associated with an intense, equatorward perpendicular electric field close to -.80 mV/m and most likely with a downward field-aligned current (FAC), but it did not accompany detectable proton aurora. Hence the downward FA electric field in the lower magnetosphere associated with this depletion was weak or absent. The motion of the FAC system with the depletion and the arc presumably enabled the downward FAC to obtain enough current carriers as ionospheric electrons were lost by the evacuation process. The evacuation process associated with the downward FAC was, however, efficient enough to establish the depletion. On the other hand, a widely distributed proton aurora observed immediately after the depletion was associated with an intense, equatorward perpendicular electric field close to 90 mV/m, enhanced electron density, and most likely a downward FAC. No electron precipitation was associated with this proton aurora. Thus the electron density enhancement, providing the downward current carriers, had to be caused by the ionization of precipitating protons presumably accelerated by downward field-aligned electric fields in the lower magnetosphere.
机译:一个案例研究,同时欧洲语无伦次散射和光学极光观测为了确定特征进行的magnetosphereionosphere耦合的电动力学的观点电离层。电离层电子之间的关系密度损耗,垂直的电场,和质子极光。在E和F地区观察损耗向极和附近的一个瘦朝赤道方向移动。与一个强烈,朝赤道方向垂直的电场接近-。和向下field-aligned最有可能当前(FAC),但是它没有陪伴探测质子极光。电场下磁气圈或与此相关损耗身体很虚弱缺席。损耗和电弧可能启用向下FAC获得足够的当前运营商电离层电子被疏散了的过程。然而,向下FAC是足够有效建立损耗。广泛分布的质子极光后立即消耗有关强烈,朝赤道方向垂直电场接近90 mV / m,增强电子密度,最有可能的一个向下的前沿空中管制官。没有相关的电子降水这个质子极光。增强,向下提供电流航空公司不得不电离引起的沉淀质子可能加速了向下field-aligned电场降低磁气圈。

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