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Convection electric field effects on outer radiation belt electron precipitationA model is presented for the possible diurnal modulation of outer radiation belt electron precipitation by considering the effect of the convection electric field on geomagnetically trapped electrons. The modulation flux is the flux due to electrons in the drift loss cone, i.e., those which drift into the bounce loss cone. The electron flux in the drift loss cone is related to the time allowable for diffusion from the stably trapped population to the drift loss cone for precipitation at a specific geographic location. This time, which is termed the maximum L-shell lifetime, is obtained by computing electron trajectories, using a realistic magnetic field model and a simple model for the electric field. The maximum L-shell lifetimes are taken to be the times between successive entries into the bounce loss cone. Conservation of the first two adiabatic invariants, as electrons are slowly energized by the convection electric field, leads to variations in pitch angle, maximum L-shell lifetimes, and, consequently, to changes in the electron flux in the drift loss cone. These results are compared with observations of precipitating electrons made with sounding rocket payloads.
Document ID
19860050522
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Gelpi, C.
(Boston University MA, United States)
Benbrook, J. R.
(Boston Univ. Boston, MA, United States)
Sheldon, W. R.
(Houston, University TX, United States)
Date Acquired
August 12, 2013
Publication Date
March 1, 1986
Publication Information
Publication: Planetary and Space Science
Volume: 34
ISSN: 0032-0633
Subject Category
Geophysics
Accession Number
86A35260
Funding Number(s)
CONTRACT_GRANT: NSF DPP-83-08128
CONTRACT_GRANT: NAG6-18
CONTRACT_GRANT: NSF DPP-80-11939
Distribution Limits
Public
Copyright
Other

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