首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Midnight ionosphere collapse at Arecibo and its relationship to the neutral wind, electric field, and ambipolar diffusion
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Midnight ionosphere collapse at Arecibo and its relationship to the neutral wind, electric field, and ambipolar diffusion

机译:阿雷西博的午夜电离层崩溃及其与中性风,电场和双极扩散的关系

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We report the analysis of "midnight collapse," a large drop in the F-layer peak height (HmF2) around midnight, observed at Arecibo during Jan. 14-22, 2010. During the nine nights of observations, the first four nights (Jan. 14-17) exhibited modest drops in HmF2 while the last five nights (Jan. 18-22) showed more severe drops. We examine the roles played by the meridional wind, electric field, and ambipolar diffusion in driving the vertical ion motion. The collapse process can be classified into three stages: preconditioning, initial descent, and sustained descent. Severe collapses occur when HmF2 is preconditioned high prior to the collapse. Ambipolar diffusion is most important during the initial descent. Neutral wind and electric field are responsible for sustaining the collapse. During Jan. 18-22, HmF2 was pushed high by the neutral wind before the collapse started. Neutral wind and electric field were in phase during the sustained severe collapses. The diurnal tide of the meridional wind provided the general condition for the collapses. The terdiurnal tide was most important to cause the difference between the two periods in our observation. Previous studies largely emphasized meridional wind being the dominant mechanism causing midnight collapse. Our study suggests that electric field and ambipolar diffusion also play an important role and the former can be the most dominant factor in some cases.
机译:我们报告了“午夜崩溃”的分析,这是2010年1月14日至22日在Arecibo观察到的午夜附近F层峰高(HmF2)的大幅下降。在观察的9个晚上,即前四个晚上( 1月14日至1月17日)的HmF2下降幅度不大,而最近5个晚上(1月18日至22日)的下降幅度更大。我们研究了子午风,电场和双极性扩散在驱动垂直离子运动中所起的作用。坍塌过程可分为三个阶段:预处理,初始下降和持续下降。当HmF2在崩溃之前预先设置为高电平时,会发生严重崩溃。在初始下降过程中,双极性扩散最为重要。中性风和电场是造成坍塌的原因。在1月18日至22日期间,HmF2在中风开始前被中性风推高。在持续的严重坍塌中,中性风和电场处于同相状态。子午风的日潮为坍塌提供了一般条件。在我们的观察中,三月潮是造成这两个时期之间差异的最重要因素。先前的研究主要强调子午风是导致午夜坍塌的主要机制。我们的研究表明,电场和双极性扩散也起着重要作用,在某些情况下前者可能是最主要的因素。

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