Physics
Scientific paper
Sep 1984
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1984georl..11..891c&link_type=abstract
Geophysical Research Letters (ISSN 0094-8276), vol. 11, Sept. 1984, p. 891-894.
Physics
43
Convective Flow, F Region, Interplanetary Magnetic Fields, Plasma Dynamics, Polar Caps, Daytime, Flow Velocity, Radar Measurement
Scientific paper
Dayside ionosphere convection at high latitudes has been examined during a series of experiments using the Sondrestrom radar together with ancillary observations of the interplanetary magnetic field (IMF) by the IMP-8 spacecraft. The radar experiments obtained a latitude coverage of 67.6 to 81.3 deg Lambda and a temporal resolution of between 14 to 25 minutes. A total of 17 rotations through the dayside cleft region during April, June and July, 1983 have been examined. The observations show two convection cells with sunward flow at lower latitudes and antisunward flow at higher latitudes. The flow commonly rotates through a 180 deg angle resulting in the predominant appearance of east-west flows. Rapid temporal variations in the convection velocities are frequently observed. Many of the high latitude variations in convection velocity appear to be directly related to variations in the IMF By component, with eastward (westward) velocity associated with negative (positive) By. This is strong evidence for a direct electrical coupling between the solar wind and dayside high latitude ionosphere.
Banks Peter M.
Clauer Robert C.
Doupnik J.
Friis-Christensen Eigil
Jorgensen Stockflet T.
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