DocumentCode
1560464
Title
Fluxes of relativistic electrons in low-Earth orbit during the decline of solar cycle 22
Author
Pesnell, W. Dean
Author_Institution
Nomad Res. Inc., Arnold, MD, USA
Volume
48
Issue
6
fYear
2001
fDate
12/1/2001 12:00:00 AM
Firstpage
2016
Lastpage
2021
Abstract
Highly relativistic electron events (HREs) contain some of the longest lasting and most energetically intense electron fluxes measured in low-Earth orbit. Their short-term effects on astronauts and space-based electronic systems as well as their long-term influence on the terrestrial climate must be evaluated using measured electron fluxes spanning the ranges of solar inputs. We have used measurements from the High Energy Particle Spectrometer (HEPS) on Upper Atmosphere Research Satellite (UARS) to develop a database of energy- and pitch-angle-resolved electron fluxes. The HEPS data were acquired during the late part of the maximum and the declining phase of solar cycle 22, the latter phase being when HREs are thought to peak in frequency and intensity. We show average differential energy spectra and the limits of variation as a function of energy. The HEPS data shows that the flux of electrons with energies around 1 MeV lasts longer than does the flux of lower energy, but still relativistic, electrons. The data are used to estimate the probability of encountering a selected flux of electrons during similar phases of the solar cycle
Keywords
biological effects of ionising particles; health hazards; radiation belts; solar activity; 1 MeV; HEPS data; High Energy Particle Spectrometer data; UARS data; Upper Atmosphere Research Satellite data; astronauts; differential energy spectra; energetically intense electron fluxes; low-Earth orbit; relativistic electrons; short-term effects; solar cycle 22; space-based electronic systems; terrestrial climate; Atmosphere; Atmospheric measurements; Databases; Electrons; Energy measurement; Extraterrestrial measurements; Frequency; Particle measurements; Satellites; Spectroscopy;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.983165
Filename
983165
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