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The Height-Dependent Delayed Ionospheric Response to Solar EUV

机译:Height-Dependent电离层延迟响应太阳能EUV

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摘要

Based on the analysis of electron density Ne profiles (Grahamstown ionosonde), a case study of the height-dependent ionospheric response to two 27-day solar rotation periods in 2019 is performed. A welldefined sinusoidal response is observed for the period from 27 April 2019 to 24 May 2019 and reproduced with a Thermosphere-Ionosphere-Electrodynamics General Circulation Model simulation. The occurring differences between model and observations as well as the driving physical and chemical processes are discussed based on the height-dependent variations of Ne and major species. Further simulations with an artificial noise free sinusoidal solar flux input show that the Ne delay is defined by contributions due to accumulation of O~+ at the Ne peak (positive delay) and continuous lAAoss of O_2~+ in the lower ionosphere (negative delay). The neutral parts' 27-day signatures show stronger phase shifts. The time-dependent and height-dependent impact of the processes responsible for the delayed ionospheric response can therefore be described by a joint analysis of the neutral and ionized parts. The return to the initial ionospheric state (and thus the loss of the accumulated O~+) is driven by an increase of downward transport in the second half of the 27-day solar rotation period. For this reason, the neutral vertical winds (upwards and downwards) and their different height-dependent 27-day signatures are discussed. Finally, the importance of a wavelength-dependent analysis, statistical methods (superposed epoch analysis), and coupling with the middle atmosphere is discussed to outline steps for future analysis.
机译:基于电子密度不分析概要文件(观光业ionosonde),一个案例研究height-dependent电离层响应两种27天太阳能旋转时间在2019年执行。观察期间从2019年4月27日到24日2019年5月,复制Thermosphere-Ionosphere-Electrodynamics一般循环仿真模型。差异模型和观测以及物理和化学过程的基础上讨论height-dependent Ne和重大的变化物种。噪音免费正弦输入显示太阳能通量不延迟是由于定义的贡献积累O ~ + Ne峰值(积极的延迟)和连续lAAoss成分~ +的低电离层延迟(负)。部分的27天签名显示更强的阶段转变。的影响过程负责因此可以推迟电离层响应由中立的分析和描述电离的部分。电离层状态(因此的损失O ~ +)是由积累增加下半年下行传输的27天的太阳旋转。中性垂直风(向上和height-dependent向下)和他们的不同27天签名进行了讨论。wavelength-dependent分析的重要性,统计方法(叠加时代分析),耦合和中间的气氛为未来的分析讨论大纲步骤。

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