Inferring electric fields and currents from ground magnetometer data - A test with theoretically derived inputs

Physics

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Auroral Electrojets, Geomagnetism, Ionospheric Conductivity, Ionospheric Currents, Magnetic Signatures, Polar Caps, Algorithms, Biot Method, Convection Currents, Current Distribution, Electric Field Strength, Ionospheric Drift

Scientific paper

Advanced techniques considered by Kamide et al. (1981) seem to have the potential for providing observation-based high time resolution pictures of the global ionospheric current and electric field patterns for interesting events. However, a reliance on the proposed magnetogram-inversion schemes for the deduction of global ionospheric current and electric field patterns requires proof that reliable results are obtained. 'Theoretical' tests of the accuracy of the magnetogram inversion schemes have, therefore, been considered. The present investigation is concerned with a test, involving the developed KRM algorithm and the Rice Convection Model (RCM). The test was successful in the sense that there was overall agreement between electric fields and currents calculated by the RCM and KRM schemes.

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