Computer Science – Sound
Scientific paper
Mar 1985
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1985jatp...47...27b&link_type=abstract
Journal of Atmospheric and Terrestrial Physics (ISSN 0021-9169), vol. 47, Jan.-Mar. 1985, p. 27-39. Research sponsored by the De
Computer Science
Sound
7
Atmospheric Heat Budget, Auroral Electrojets, Electron Precipitation, Energy Budgets, Ionospheric Heating, Polar Regions, High Energy Electrons, Magnetic Signatures, Ohmic Dissipation, Resistance Heating, Riometers, Rocket Sounding, Temporal Distribution
Scientific paper
The temporal development of Joule heating rates, integrated over the width of the auroral event, are estimated in the framework of determining the temporal development of the energy input into the high-latitude ionosphere, which is within the scope of the Energy Budget Campaign. Magnetic observations, made by a meriodional chain of four geomagnetic observatories, and latitudinally averaged values of the north-south electric field components are used in the study, with the assumptions of the N-S electric field being constant throughout the jet and of the N-S spatial variation of the jet current density. Furthermore, latitude-integrated particle heating due to energetic electrons in certain energy ranges is estimated on the basis of meridional photometer scans and cosmic noise absorption measurements.
Baumjohann Wolfgang
Evans Silvan D.
Gustafsson Georg
Nielsen Edward
Ranta Hilkka
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