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Longitudinal variations of electron temperature and total ion density in the sunset equatorial topside ionosphere

机译:赤道日落电离层中电子温度和总离子密度的纵向变化

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摘要

Based on the DMSP F13 Satellite observations from 1995 to 2005, the longitudinal distributions of the electron temperature (T-e) and total ion density (N-i) in the sunset equatorial topside ionosphere are examined. The results suggest that the longitudinal variations of both T-e and N-i exhibit obvious seasonal dependence as follows: (1) wavenumber-four longitudinal structure in equinox, (2) three peaks structure in June solstice, and (3) two peaks structure in December solstice. Moreover, the longitudinal variations of T-e and N-i show significant anti-correlation, and we speculate that the longitudinal variation of T-e may result from that of N-i which can control T-e through the electron cooling rate. The wavenumber-four longitudinal structures of both T-e and N-i in equinox may relate to the eastward propagating zonal wavenumber-3 diurnal tide (DE3), which has effect on the amplitude of the daytime zonal electric field. The longitudinal variation of T-e and N-i in the two solstices may be caused both by longitudinal variation of geomagnetic declination and DE3.
机译:根据DMSP F13卫星1995年至2005年的观测,检查了日落赤道顶电离层的电子温度(T-e)和总离子密度(N-i)的纵向分布。结果表明,Te和Ni的纵向变化表现出明显的季节依赖性,分别为:(1)春分时波数为四的纵向结构;(2)六月至三月的三个峰结构;(3)十二月至五月的两个峰结构。 。此外,T-e和N-i的纵向变化表现出显着的反相关性,我们推测T-e的纵向变化可能是由N-i的纵向变化引起的,N-i可以通过电子冷却速率控制T-e。在春分点,T-e和N-i的波数四纵向结构可能与向东传播的纬向波数为3的日潮(DE3)有关,这对白天纬向电场的振幅有影响。两种胶浆中T-e和N-i的纵向变化可能都是由地磁偏角和DE3的纵向变化引起的。

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