Energetic electron precipitation during a magnetospheric substorm and its relationship to wave particle interaction
Journal Article
·
· J. Geophys. Res.; (United States)
Energetic electron precipitation was observed via X ray measurements from three simultaneously flown balloons in a region conjugate to the location of the geosynchronous satellite GEOS 2. Data from the particle, wave, and field experiments on this satellite were used to investigate the relationship between magnetospheric processes in the equatorial plane and the electron precipitation. A large part of the electron precipitation during a substorm on July 3, 1979, was accompanied by VLF waves at whistler frequencies and had a temporal structure grossly similar to the intensity variation of the equatorial electron fluxes. Some precipitation also occurred in the absence of VLF waves. During the wave associated precipitation the equatorial electrons were anisotropically distributed with maximum fluxes perpendicular to the geomagnetic field. The anisotropy was larger than the critical anisotropy and thus enabled wave growth. The growth rate itself was determined numerically from the observations and turned out to have a frequency dependence similar to that of the observed waves. The interaction of the electrons with the waves led to strong pitch angle diffusion. The temporal variations of the electron flux in the loss cone were similar to those of the electron precipitation observed with a balloon near the conjugate point to GEOS 2. It is concluded that most of the electron precipitation during this substorm was caused by wave particle interaction.
- Research Organization:
- Max-Plane Institute fuer Aeronomie, Katlenburg-Lindau, Federal Republic of Germany
- OSTI ID:
- 5522780
- Journal Information:
- J. Geophys. Res.; (United States), Journal Name: J. Geophys. Res.; (United States) Vol. 91:A5; 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
CHARGED-PARTICLE PRECIPITATION
DIFFUSION
ELECTROMAGNETIC RADIATION
ELECTRON PRECIPITATION
ELECTRON TEMPERATURE
GEOMAGNETIC CONJUGACY
GEOS SATELLITES
LOSS CONE
MAGNETIC BAYS
NOISE
RADIATIONS
RADIO NOISE
RADIOWAVE RADIATION
SATELLITES
WHISTLERS
Ionospheric
& Magetospheric Phenomena
71 CLASSICAL AND QUANTUM MECHANICS
GENERAL PHYSICS
CHARGED-PARTICLE PRECIPITATION
DIFFUSION
ELECTROMAGNETIC RADIATION
ELECTRON PRECIPITATION
ELECTRON TEMPERATURE
GEOMAGNETIC CONJUGACY
GEOS SATELLITES
LOSS CONE
MAGNETIC BAYS
NOISE
RADIATIONS
RADIO NOISE
RADIOWAVE RADIATION
SATELLITES
WHISTLERS