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Electrodynamics of the vertical coupling processes in the atmosphere-ionosphere system of the low latitude region

机译:低纬地区大气电离层系统中垂直耦合过程的电动力学

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摘要

Dynamical. electro-dynamical and electrical coupling processes originating from upward propagation of atmospheric waves, and magnetosphere-ionoshere interaction are responsible for the large degree of variabilities observed in the low latitude ionosphere. One of the most outstanding aspects of its phenomenology is related to the Sunset electrodynamical processes responsible for the evening enhancements in zonal and vertical electric fields and the associated spread of F/plasma bubble irregularity development. Recent observational results have provided evidence of significant contribution to their quiet time variability arising from thermospheric wind patterns, upward propagating planetary waves and possibly sporadic E layers. This paper provides,in overview and some new results on planetary wave coupling, with the equatorial F region, the E layer conductivity as key connecting mechanism, a possibly interactive role by sporadic E layers. and the resulting day-to-day variability in the evening prereversal electric field enhancements With consequences on spread F development.
机译:动态的。电动力和电耦合过程源于大气波的向上传播,以及磁层-电离层的相互作用是低纬度电离层中观测到的巨大变化的原因。其现象学最杰出的方面之一与日落电动力学过程有关,日落电动力学过程负责晚上在区域和垂直电场中增强,并伴随着F /等离子体气泡不规则性发展。最近的观测结果提供了证据,表明它们对它们的安静时间变异性有重大贡献,这些变化是由热层风型,向上传播的行星波以及可能的零星E层引起的。本文概述了行星波耦合的一些新结果,并以赤道F区,E层电导率作为关键连接机制,零星E层可能相互作用的作用。以及晚上逆转电场增强后的日常变化,对扩散F的发展产生影响。

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