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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A Statistical Study on the Climatology of the Equatorial Plasma Depletions Occurrence at Topside Ionosphere During Geomagnetic Disturbed Periods
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A Statistical Study on the Climatology of the Equatorial Plasma Depletions Occurrence at Topside Ionosphere During Geomagnetic Disturbed Periods

机译:一个统计的气候学研究赤道出现创等离子体发生上部在地磁扰动电离层期

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摘要

Using the in situ measurements of ROCSAT-1 satellite during 181 geomagnetic storms happened from July 1999 to June 2004, a superposed epoch analysis of the equatorial plasma depletions (EPDs) occurrence is conducted. At postsunset hours (1800-2200 LT), the EPDs occurrence is enhanced shortly at the storm onset, but afterward, a long-last suppression dominates. The EPDs occurrence at Midnight (2200-0200 LT) generally shares a similar pattern to that at postsunset hours. The occurrence at predawn (0200-0400) gradual increases near storm onset and reach its maximum at 6-9 hr and decays until 18 hr. For a given longitude at postsunset/midnight, the EPDs occurrence tends to be suppressed or promoted when the EPDs do or do not prevail. The disturbed vertical plasma drift generally determines the inhibition/promotion of the EPDs occurrence at postsunset/predawn. However, for predawn EPDs occurrence, the plasma vertical drift cannot well explain the longitudinal variation. The continuous observations from consecutive orbits of ROCSAT-1 are carefully compared and the result suggests that the geomagnetic storm-induced additional predawn EPDs are preferred to be the longer-lived developed EPDs rather than fresh EPDs. In addition, a possible mechanism concerning the background plasma density enhancement which might be related with the energetic electrons induced nighttime ionization is proposed.
机译:使用ROCSAT-1的原位测量卫星在181年地磁风暴发生从1999年7月到2004年6月,叠加的时代分析了赤道等离子消逝(环保署)发生。1800 - 2200小时(LT),环保署发生增强在风暴爆发不久,但是随后,长久的压抑的主导者。环保署发生在午夜(2200 - 0200 LT)一般的股票,在类似的模式postsunset小时。(0200 - 0400)逐渐增加附近风暴发作并在6 - 9小时,衰变,直到达到最大18小时。postsunset /午夜,环保署会发生时被抑制或促进环保署做或做什么不占上风。通常决定了抑制/推广环保署发生在postsunset /黎明前。然而,对于黎明前的环保署发生等离子体垂直漂移不能很好的解释纵向变化。连续观察从ROCSAT-1的轨道仔细比较,结果表明地磁storm-induced附加黎明前的环保署是首选的寿命更长发达环保署而不是新鲜的环保署。此外,一个可能的机制有关背景等离子体密度增强这可能与精力充沛的电子诱导有关提出了夜间电离。

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