Interaction of plasma cloud with external electric field in lower ionosphere

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...

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Main Authors: Y. S. Dimant, M. M. Oppenheim
Format: Article
Language:English
Published: Copernicus Publications 2010-03-01
Series:Annales Geophysicae
Online Access:https://www.ann-geophys.net/28/719/2010/angeo-28-719-2010.pdf
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spelling doaj-bd58f6e021df4607a09c47bcfbec30092020-11-24T23:02:47ZengCopernicus PublicationsAnnales Geophysicae0992-76891432-05762010-03-012871973610.5194/angeo-28-719-2010Interaction of plasma cloud with external electric field in lower ionosphereY. S. Dimant0M. M. Oppenheim1Boston University, Boston, MA, USABoston University, Boston, MA, USAIn 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.https://www.ann-geophys.net/28/719/2010/angeo-28-719-2010.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Y. S. Dimant
M. M. Oppenheim
spellingShingle Y. S. Dimant
M. M. Oppenheim
Interaction of plasma cloud with external electric field in lower ionosphere
Annales Geophysicae
author_facet Y. S. Dimant
M. M. Oppenheim
author_sort Y. S. Dimant
title Interaction of plasma cloud with external electric field in lower ionosphere
title_short Interaction of plasma cloud with external electric field in lower ionosphere
title_full Interaction of plasma cloud with external electric field in lower ionosphere
title_fullStr Interaction of plasma cloud with external electric field in lower ionosphere
title_full_unstemmed Interaction of plasma cloud with external electric field in lower ionosphere
title_sort interaction of plasma cloud with external electric field in lower ionosphere
publisher Copernicus Publications
series Annales Geophysicae
issn 0992-7689
1432-0576
publishDate 2010-03-01
description 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.
url https://www.ann-geophys.net/28/719/2010/angeo-28-719-2010.pdf
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