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首页> 外文期刊>IEEE Transactions on Plasma Science >Satellite observations of electric fields in the inner magnetosphere and their effects in the mid-to-low latitude ionosphere
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Satellite observations of electric fields in the inner magnetosphere and their effects in the mid-to-low latitude ionosphere

机译:卫星对内磁层电场的观测及其对中低纬度电离层的影响

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During geomagnetic disturbances, momentum and energy are transferred in significant quantities from interplanetary space to the magnetosphere-ionosphere system through the mediation of charged particles and electric fields. The most dramatic manifestations occur in the plasma sheet and the conjugate auroral ionosphere. However, electric fields observed during magnetic storms also penetrate the inner magnetosphere that maps to subauroral latitudes in the ionosphere. For example, a sudden commencement shock wave initiating the March 1991 magnetic storm created a new radiation belt within minutes. Particle and field measurements by Combined Release and Radiation Effects Satellite (CRRES) near the equatorial plane of the magnetosphere and by Defense Meteorological Satellite Program (DMSP) satellites in the topside ionosphere during the magnetic storm of June 1991 indicate that penetration electric fields energized the stormtime ring current and rapidly transported plasma within subauroral ion drift (SAID) structures at midlatitudes and in upward drafting plasma bubbles at low latitudes. Through enhanced transport or chemical reactions, the SAIDs dug deep plasma troughs at topside altitudes. Equatorial plasma bubbles developed while the ring current was unable to shield the electric field from the innermost magnetosphere.
机译:在地磁扰动期间,动量和能量通过带电粒子和电场的介导从行星际空间大量转移到磁层-电离层系统。最明显的表现出现在血浆片和共轭极光电离层中。但是,在磁暴期间观察到的电场也会穿透内部磁层,该内部磁层映射到电离层的极光纬度以下。例如,1991年3月一次磁暴引发的突然启动冲击波在几分钟内就形成了一条新的辐射带。在1991年6月的磁暴期间,磁层赤道附近的联合释放和辐射效应卫星(CRRES)以及顶电离层的国防气象卫星计划(DMSP)卫星对粒子和场的测量表明,穿透电场激发了风暴时间在中纬度的极耳下离子漂移(SAID)结构内以及低纬度的向上牵伸的等离子体气泡中产生环形电流和快速传输的等离子体。通过增强的运输或化学反应,SAID在顶空挖掘出深的血浆槽。当环电流无法屏蔽最内层磁层的电场时,出现了赤道等离子气泡。

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