Physics
Scientific paper
May 1991
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1991jatp...53..389k&link_type=abstract
Journal of Atmospheric and Terrestrial Physics (ISSN 0021-9169), vol. 53, May 1991, p. 389-407. Research supported by NFR.
Physics
45
Auroral Zones, Electric Fields, Metal Ions, Molecular Ions, Sodium, Sporadic E Layer, Computerized Simulation, Eiscat Radar System (Europe), Radar Measurement, Vertical Distribution
Scientific paper
The characteristics of metallic and molecular ion sporadic-E (Es) layers, formed by the action of strong electric fields at auroral latitudes, are examined using computer simulations. It is found that, for electric fields directed between northward and westward (northern hemisphere), thin metallic ion layers (less than 2-km thick) can be formed above about 105-km altitude. For electric fields directed from westward, through southward, to south-eastward, slightly thicker (4-6 km thick) metallic ion layers can form between 90 and 105 km altitudes. Thin layers of molecular ions can be formed by electric fields directed between north and west if the ion density is low. Examples of Es layers observed by the EISCAT radar, together with simultaneous observations of electric fields and ion drifts are presented which show good agreement with the simulations. The relationship between the lower-altitude Es layers and sudden sodium layers (SSLs) is discussed leading to an explanation of some of the characteristics of SSLs at high latitude. A possible involvement of smoke particles in the formation of both Es layers and SSLs is proposed.
Kirkwood Sheila
von Zahn Ulf
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