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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Coherence Scale and Directivity of Nighttime Equatorial Plasma Irregularities: Results From Swarm Formation Flight
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Coherence Scale and Directivity of Nighttime Equatorial Plasma Irregularities: Results From Swarm Formation Flight

机译:相干规模和夜间的方向性赤道等离子违规行为:结果群编队飞行

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摘要

Since the launch in 2013, the three satellites of the Swarm constellation have been conducting multipoint observations of ionospheric plasma density. The variety of their flight formations is advantageous for investigating (a) coherence scale and (b) directivity of nighttime Equatorial Plasma Irregularities (EPIs). In this study, we address the two topics statistically using in situ plasma density measured at 2 Hz rates by the Swarm constellation from 2013 to 2021. Maximum cross-correlation coefficients between two Swarm density profiles decrease as longitude differences between the observation pair increase. The coefficient is larger than 0.6 only when two satellites are within about 0.1° in geographic longitude (GLON), which approximately corresponds to 10 km. When two density profiles are considerably correlated, we can determine preferred bearings of the EPI structure. A majority of EPIs conform to the backward-C shapes astride the dip equator. The preference for backward-C is more conspicuous later at night than in the early evening. Different GLON sectors exhibit slightly different directions of EPI structures, but the behavior is not well organized with the geomagnetic declinations of the respective sectors. EPI directions do not display monotonic dependence on Ap or F_(10.7), but further studies during the coming solar maximum are necessary to better represent high solar/ geomagnetic activity.
机译:自2013年启动以来,这三个的卫星蜂群星座一直在进行多点观测电离层等离子体密度。便于调查(一)一致性规模和(b)夜间赤道的方向性等离子体违规行为(epi)。解决两个主题统计使用原位测量速度2赫兹的等离子体密度群星座从2013年到2021年。两个群体之间的互关联系数密度资料减少经度观察对之间的区别增加。当两颗卫星在约0.1°地理经度(GLON),大约对应于10公里。是显著相关的,我们能确定吗EPI的首选轴承结构。多数的epi符合backward-C形状横跨在磁赤道。晚上backward-C以后更明显在傍晚。表现出稍微不同的EPI的方向结构,但行为并不好组织的地磁由于各自的部门。显示单调依赖Ap或f (10.7),但进一步的研究在未来太阳能最大的是必要的,以便更好地代表高太阳能/地磁活动。

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