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A comparative study of the northern and southern equatorial ionization anomaly crests in the East-Asian sector during 2006-2015

机译:2006 - 2015年东亚部门北部和南部赤道电离异常冠的比较研究

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摘要

The GPS observation data measured at GXUN (22.84°N, 108.33°E, MLAT ~12.14°N) and BAKO (6.49°S, 106.84°E, MLAT ~17.18° S) stations from 2006 to 2015 are utilized to make a comparative study of the northern and southern equatorial ionization anomaly (EIA) crests in the East-Asian sector. The intensity of northern EIA crest is similar to that of southern EIA crest during the solar minimum years, while during the solar maximum years, the intensity of northern EIA crest is a little stronger than that of southern EIA crest except in summer season of northern hemisphere. The geomagnetic latitude (MLAT) of northern EIA crest shows a weak semiannual variation with the highest in equinoctial months and the lowest in solistical months, but the MLAT of southern EIA crest shows a clear annual variation with the highest in summer season of southern hemisphere and the lowest in winter season of southern hemisphere, which is particularly obvious during the solar minimum years. The intensities of northern and southern EIA crests have good correlation, which is independent of the solar activity, but the correlation coefficients of MLAT between northern and southern EIA crests increase with the solar activity. A comprehensive analysis of the previous studies and our results indicate that the intensity, MLAT, and interhemispheric asymmetry of EIA crest are mainly dominated by photochemical process, equatorial fountain effect, and neutral wind, respectively.
机译:在GXUN(22.84°N,108.33°E,MLAT〜12.14°N)和BAKO(6.49°S,106.84°E,MLAT〜17.18°S,MLAT〜17.18°S)站点测量的GPS观测数据被利用于2006年至2015年的比较东亚部门北部和南部赤道电离异常(EIA)冠的研究。北部北部北部的强度与太阳能最短的南部北部嵴相似,而在太阳最大年份期间,北部北部北部北部的强度比北半球夏季除了南欧诗人的强度略高。北部北部北部的地磁纬度(MLAT)展示了越来越多的欧洲因素和唯一的月份最低的弱半年变化,但南方南部南部的MLAT展示了南半球夏季最高的年度变化。南半球冬季最低的最低季,在太空最短的时间里尤为明显。北部和南部的北部冠异性的强度具有良好的相关性,这与太阳能活动无关,但北部和南部北部和南部北部冠的相关系数随太阳活动而增加。对先前研究的综合分析和我们的结果表明,EIA Crest的强度,缩略图和卵闭是主要的,主要由光化学过程,赤道喷泉效应和中立风。

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