1966Journal of Geophysical Research AtmospheresRequires access

On the equatorial electrojet

G. J. Gassmann, R. A. Wagner

Open publisher page 8 citations

Abstract

During 29 crossings of the geomagnetic dip equator near 80°W longitude in February and July 1964, airborne equipment obtained cross sections of geomagnetic field intensity and ionospheric characteristics. The magnetic anomalies due to the electrojet and the amplitudes of Esq echoes show fair correlation of details and fair-to-good correlation of large scale features. Width and position of the electrojet vary considerably from hour to hour and from day to day. The data suggest that the electrojet during certain days in February was separated into two or more parallel streaks. The magnetic data also show strong electric currents in the ocean. Those appear to be a sector of the ‘internal part’ of the Sq current system, however stronger than anticipated.

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What this paper is about

During 29 crossings of the geomagnetic dip equator near 80°W longitude in February and July 1964, airborne equipment obtained cross sections of geomagnetic field intensity and ionospheric characteristics. The magnetic anomalies due to the electrojet and the amplitudes of Esq echoes show fair correlation of details and fair-to-good correlation of large scale features. Width and position of the electrojet vary considerably from hour to hour and from day to day. The data suggest that the electrojet during certain days in February was separated into two or more parallel streaks. The magnetic data also show strong electric currents in the ocean. Those appear to be a sector of the ‘internal part’ of the Sq current system, however stronger than anticipated.

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Available abstract

During 29 crossings of the geomagnetic dip equator near 80°W longitude in February and July 1964, airborne equipment obtained cross sections of geomagnetic field intensity and ionospheric characteristics. The magnetic anomalies due to the electrojet and the amplitudes of Esq echoes show fair correlation of details and fair-to-good correlation of large scale features. Width and position of the electrojet vary considerably from hour to hour and from day to day. The data suggest that the electrojet during certain days in February was separated into two or more parallel streaks. The magnetic data also show strong electric currents in the ocean. Those appear to be a sector of the ‘internal part’ of the Sq current system, however stronger than anticipated.

Key concepts: Electrojet, Equatorial electrojet, Earth's magnetic field, Longitude, Magnetic dip, Ionosphere, Equator, Geophysics

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