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Investigation on F layer height rise and equatorial spread F onset time: Signature of standing large-scale wave

机译:F层高度上升和赤道扩展F起伏时间的研究:驻波的特征

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Equatorial spread F observations have been categorized into three categories based on ionograms recorded over Sriharikota. First category comprised cases where the onset of equatorial spread F (ESF) was concurrent with the peak h'F time. Second and third categories comprised cases where the onset of ESF happened with a delay of 30min and more than 30min, respectively, with reference to the peak h'F time. Average peak h'F in the first category was more than 35km higher than that in the second and third categories. Also, the peak vertical (upward) plasma drift was higher in the first category. Assuming the genesis of F region irregularity to have happened at or before the time of F layer attaining the peak height, late onset of ESF indicates the genesis of irregularities to have happened westward of Sriharikota. The fact that the peak h'F values were remarkably different in the three categories indicates a zonal variation of eastward electric field and postsunset height rise of F layer. The relative magnitude of the F layer height rise in the three different categories over Sriharikota has also been found to be significantly different than that over Thumba, an equatorial (magnetic) station located ∼360km westward of Sriharikota longitude. This scenario points toward the existence of a large-scale zonal standing wave in the F layer and its important role in F region instability process. Results presented in the manuscript have been discussed in the light of current understanding on the large-scale wave structure.
机译:基于斯里哈里科塔上记录的电离图,赤道传播的F观测分为三类。第一类包括赤道传播F(ESF)的发作与h'F高峰时间同时发生的情况。第二类和第三类包括以h'F高峰时间为基准,ESF发作分别延迟30分钟和30分钟以上的情况。第一类的平均峰值h'F比第二类和第三类的平均峰值高35 km以上。同样,在第一类中,峰值垂直(向上)等离子体漂移较高。假设F区域不规则性的发生发生在F层达到峰值高度之前或之前,ESF的晚发表明该不规则性的发生发生在Sriharikota的西侧。 h'F峰值在这三个类别中明显不同的事实表明,东电场的区域变化和F层的未偏移高度升高。斯里哈里科塔上三个不同类别的F层高度上升的相对大小也被发现与斯里哈里科塔以西约360公里处的赤道(磁)站Thumba上的相对不同。这种情况表明F层中存在大规模的纬向驻波及其在F区域失稳过程中的重要作用。根据目前对大型波浪结构的理解,对手稿中提出的结果进行了讨论。

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