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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Multi-instrumental Observations of the Quasi-16-Day Variations From the Lower Thermosphere to the Topside Ionosphere in the Low-Latitude Eastern Asian Sector During the 2017 Sudden Stratospheric Warming Event
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Multi-instrumental Observations of the Quasi-16-Day Variations From the Lower Thermosphere to the Topside Ionosphere in the Low-Latitude Eastern Asian Sector During the 2017 Sudden Stratospheric Warming Event

机译:Multi-instrumental观测的Quasi-16-Day低的变化热大气层上部的电离层低纬度东亚部门在2017年突然的变暖事件

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摘要

Variations of the low-latitude ionosphere in the eastern Asian sector during the 2017 sudden stratospheric warming (SSW) were studied with multi-instrumental observations that correspond to different altitudes. Specifically, the variations of the topside ionosphere as high as over 830 km were investigated with data from the Swarm B satellite (~500 km), the Defense Meteorological Satellite Program F15 satellite (~830 km), and the Meteorological Operational satellite-A (~830 km). The main results are as follows. (1) Simultaneous variations were detected in the ionospheric parameters from the E region to the topside ionosphere around the first peak warming of the 2017 SSW. (2) These variations exhibited similar quasi-16-day (Q16D; ~14.5-day) periods, and these periods were most significant just before the first peak warming. (3) These simultaneous Q16D variations were not due to the solar extreme ultraviolet irradiance or geomagnetic activities but were probably driven from below, by planetary waves or semidiurnal lunar tides that enhanced during the SSW. (4) The Q16D variation of the topside ionospheric electron density at ~830 km was probably driven not only by the upward mapping electric field modulated in the E region dynamo but also by the electric field modulated in the F region dynamo.
机译:低纬度电离层的变化东亚部门在2017年突然平流层变暖(量)进行了研究multi-instrumental观测相对应不同的高度。变化的上部电离层高达与数据超过了830公里群B卫星(约500公里),防御气象卫星计划F15卫星(约830公里),气象业务颗星球(~ 830公里)。遵循。检测到的电离层参数E区域周围的上部电离层峰变暖的2017 f。变化表现出类似quasi-16-day (Q16D;~ 14.5天的时间),这些时间最多重要的第一个峰值变暖之前。(3)这些同时Q16D没有变化由于太阳能极端紫外线辐照度但可能是或者地磁活动从下面,由行星波或半日潮汐变化,增强中量。电离层电子密度在~ 830公里可能不仅由向上映射电场调制E地区的发电机而且电场调制的F地区的发电机。

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