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首页> 外文期刊>Annales Geophysicae >Interaction of plasma cloud with external electric field in lower ionosphere
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Interaction of plasma cloud with external electric field in lower ionosphere

机译:电离层下部等离子体云与外部电场的相互作用

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摘要

In the auroral lower-E and upper-D region of the ionosphere, plasma clouds, such as sporadic-E layers and meteor plasma trails, occur daily. Large-scale electric fields, created by the magnetospheric dynamo, will polarize these highly conducting clouds, redistributing the electrostatic potential and generating anisotropic currents both within and around the cloud. Using a simplified model of the cloud and the background ionosphere, we develop the first self-consistent three-dimensional analytical theory of these phenomena. For dense clouds, this theory predicts highly amplified electric fields around the cloud, along with strong currents collected from the ionosphere and circulated through the cloud. This has implications for the generation of plasma instabilities, electron heating, and global MHD modeling of magnetosphere-ionosphere coupling via modifications of conductances induced by sporadic-E clouds.
机译:在电离层的极光下层E和上层D区域,每天都会出现等离子云,例如零星E层和流星等离子迹线。磁层发电机产生的大规模电场将极化这些高传导性的云,重新分布静电势并在云内部和周围产生各向异性电流。使用云和背景电离层的简化模型,我们开发了这些现象的第一个自洽三维分析理论。对于稠密的云,该理论预测云周围会高度放大的电场,以及从电离层收集并在云中循环的强电流。这对等离子体不稳定,电子加热以及通过零星E云引起的电导率的修改对磁层-电离层耦合进行整体MHD建模具有重要意义。

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