Origins of enhanced field-aligned current at the edge of an auroral arc
Journal Article
·
· Journal of Geophysical Research; (USA)
- Regis College Research Center, Weston, MA (USA)
Rocket and radar observations of auroral arcs indicate that the upward field-aligned currents associated with such arcs sometimes are larger at their edges than within the arcs. Bruening and Goertz (1985) reported one such set of observations, made by instruments on the Porcupine F4 rocket. Porcupine F4 measured a fourfold increase in the magnitude of the upward field-aligned current at the edge of an auroral arc over its value in the arc's center, while the energy of the peak in the electron differential flux decreased at the edge of the arc and the electron distribution function remained nearly isotropic in pitch angle throughout the arc. One mechanism which has been proposed to explain the creation of auroral arcs is the adiabatic acceleration of magnetospheric electrons through a field-aligned electrostatic potential. The upward field-aligned current which results is a function of the density and parallel and perpendicular temperatures of the magnetospheric electron population as well as the magnitude and altitude of the electrostatic potential drop. If the arc traversed by Porcupine F4 was created in this way, the increase in upward current at the edge of the arc cannot be explained solely by an increase in the altitude of the top of the field-aligned potential drop. Rather, an increase in the density, a decrease in the perpendicular temperature of the magnetospheric electron population at the edge of the arc, or both are needed to explain the observed increase in upward field-aligned current.
- OSTI ID:
- 6048168
- Journal Information:
- Journal of Geophysical Research; (USA), Journal Name: Journal of Geophysical Research; (USA) Vol. 94:A9; ISSN 0148-0227; ISSN JGREA
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
640201* -- Atmospheric Physics-- Auroral
Ionospheric
& Magetospheric Phenomena
71 CLASSICAL AND QUANTUM MECHANICS
GENERAL PHYSICS
ACCELERATION
AURORAE
CHARGED-PARTICLE PRECIPITATION
CURRENTS
DISTRIBUTION FUNCTIONS
EARTH ATMOSPHERE
EARTH MAGNETOSPHERE
ELECTRIC CURRENTS
ELECTRON DENSITY
ELECTRON PRECIPITATION
ELECTRONS
ELEMENTARY PARTICLES
FERMIONS
FUNCTIONS
ISOTROPY
LEPTONS
MEASURING INSTRUMENTS
ORIGIN
RADAR
RANGE FINDERS
ROCKETS
Ionospheric
& Magetospheric Phenomena
71 CLASSICAL AND QUANTUM MECHANICS
GENERAL PHYSICS
ACCELERATION
AURORAE
CHARGED-PARTICLE PRECIPITATION
CURRENTS
DISTRIBUTION FUNCTIONS
EARTH ATMOSPHERE
EARTH MAGNETOSPHERE
ELECTRIC CURRENTS
ELECTRON DENSITY
ELECTRON PRECIPITATION
ELECTRONS
ELEMENTARY PARTICLES
FERMIONS
FUNCTIONS
ISOTROPY
LEPTONS
MEASURING INSTRUMENTS
ORIGIN
RADAR
RANGE FINDERS
ROCKETS