首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Plasma density undulations correlated with thermospheric neutralmass density in the daytime low-latitude to midlatitude topside ionosphere
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Plasma density undulations correlated with thermospheric neutralmass density in the daytime low-latitude to midlatitude topside ionosphere

机译:等离子体密度起伏与在白天thermospheric neutralmass密度低纬度到中间纬度上部电离层

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摘要

Plasma density undulations in the dayside low-latitude/midlatitude ionospheric F region were often attributed to thermospheric gravity waves (TGWs). However, the relationship between the former and the latter has been at best indirectly evidenced. In this study we investigate daytime fluctuations in neutral mass density (ρ) and plasma density (n_e) measured onboard CHAMP from 2001 to 2010. A significant amount of daytime fluctuations in ne is strongly correlated with in situ fluctuations of ρ, which we term "TGW-related n_e fluctuations." The TGW-related n_e fluctuations are (1) stronger in the winter hemisphere than in the summer hemisphere and (2) strongest in the South American sector during June solstice months. These climatological features are in general agreement with those of TGWs reported previously, especially at midlatitudes. On the other hand, the relative amplitude of TGW-related n_e fluctuations does not depend strongly on solar activity.
机译:等离子体密度起伏的光面低纬度地区/中间纬度电离层F通常归因于thermospheric重力吗波(TGWs)。前者和后者已经在最好的间接证明。探讨日间波动中性的质量密度(ρ)和等离子体密度(n_e)测量在从2001年到2010年冠军。白天不强烈的波动ρ的原位与波动我们“TGW-related n_e波动。”(1)强在TGW-related n_e波动冬天比夏天半球半球和(2)在南方最强美国部门夏至期间。这些气候特征协议与TGWs报道之前,特别是在情理之中。的相对振幅TGW-related n_e波动不强烈依赖太阳能活动。

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