首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Latitude and local time variations of topside magnetic field‐aligned ion drifts at solar minimum
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Latitude and local time variations of topside magnetic field‐aligned ion drifts at solar minimum

机译:当地时间纬度和上部的变化磁场检测离子漂移太阳能相一致最低

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摘要

The movement of ions along terrestrial magnetic field lines frequently causes the redistribution of ionization between northern and southern hemispheres. This behavior is known as interhemispheric transport and is an important source of coupling between the ion and neutral gases in the upper atmosphere. The Communications/Navigation Outage Forecast System (C/NOFS) satellite and the Coupled Ion Neutral Dynamics Investigation (CINDI) provide an opportunity to directly measure ion velocities and ion densities in the topside ionosphere, facilitating the study of the field‐aligned ion motions near the equator. Using data from 2008 and 2009, the field‐aligned ion velocities shows the presence of and variations in the interhemispheric transport during this extreme solar minimum. Solar local time and corrected magnetic latitude variations in field‐aligned plasma transport at equinox and solstice are examined for a fixed longitude region and the consistency or the observed trends are compared to the expected behavior of F region neutral winds.
机译:沿着地面磁离子的运动电场线经常导致再分配北部和南部之间的电离半球。两半球间的运输和是一个重要的源之间的耦合离子和中性的气体在高层大气中。通信/导航故障预测系统(C / nof)卫星和耦合离子中性的(辛迪)提供一个动态调查直接测量离子速度的机会和离子密度的上部电离层,促进研究领域一致的离子赤道附近的运动。到2009年,这个领域还是离子速度显示对齐的存在和变化在这个极端的两半球间的运输太阳能最低。地理纬度的变化磁场一致等离子体传输在equinox和冬至检查固定经度地区一致性或观察到的趋势进行比较F的预期行为地区中立大风。

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