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Kirkwood & von Zahn 1993
Kirkwood, S. and von Zahn, U. (1993). Formation mechanisms for low-altitude Es and their relationship with neutral Fe Layers: Results from the METAL Campaign. Journal of Geophysical Research 98: doi: 10.1029/93JA02644. issn: 0148-0227.

The METAL campaign was a multi-instrument campaign conducted in September--October 1991 that was designed to investigate the relationship between neutral and ionized metallic layers in the high-latitude lower ionosphere. Measurements included electron density profiles and electric fields from the EISCAT UHF incoherent scatter radar, ionosonde measurements of Es layers, neutral Fe profiles from lidar and rocket observations of winds (by chaff release), and measurements of plasma density and ion composition (by mass spectrometer). Es layers were observed on eight occasions. The measurements are here compared with simulations of Es formation by tidal wind shear and electric fields. The main features of the Es layers are found to be consistent with formation by tidal wind shear alone in one case and by the combined action of wind shear and electric fields in the remaining cases. On three occasions, layers were seen to descend rapidly, in one case to below 90-km altitude, and the rate of descent was found to be consistent with the expected action of the observed electric fields. Sporadic neutral Fe layers were observed on seven occasions, including four cases in close correlation with Es . However, the neutral layers were generally not at exactly the same altitude as the Es , nor did they follow the same altitude changes. The results indicate that both wind shears and electric fields are important for the formation of thin layers and the vertical transport of metal ions in the high-latitude lower thermosphere. The show that neutral Fes layers, although they may be formed in close association with Es layers, can persist and migrate independently of Es layers. This latter observation suggests that partial reionization of neutral layers by intense auroral particle precipitation may explain some observations of multiple Es layers. ¿ American Geophysical Union 1993

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Abstract

Keywords
Ionosphere, Ionosphere-atmosphere interactions, Ionosphere, Auroral ionosphere, Ionosphere, Electric fields and currents, Atmospheric Composition and Structure, Middle atmosphere—composition and chemistry
Journal
Journal of Geophysical Research
http://www.agu.org/journals/jb/
Publisher
American Geophysical Union
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