Electron precipitation and ionospheric disturbance

From Introduction: The minimum in the scalar magnitude of the geographic total field, which lies off the coast of Brazil, allows the mirror points of trapped particles to dip low into the atmosphere over the South Atlantic Ocean, resulting in two regions of maximum intensity of preciptated particles...

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Main Author: Torr, Marsha R
Format: Master Thesis
Language:English
Published: Rhodes University 1966
Subjects:
Online Access:http://hdl.handle.net/10962/d1007691
https://corycommons.ru.ac.za/vital/access/manager/Repository/vital:5509
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spelling ftrhodesunivcory:vital:5509 2023-05-15T18:21:17+02:00 Electron precipitation and ionospheric disturbance Torr, Marsha R 1966 161 leaves pdf http://hdl.handle.net/10962/d1007691 https://corycommons.ru.ac.za/vital/access/manager/Repository/vital:5509 English eng Rhodes University Faculty of Science, Physics vital:5509 https://corycommons.ru.ac.za/vital/access/manager/Repository/vital:5509 http://hdl.handle.net/10962/d1007691 Torr, Marsha R Electrons Electron precipitation Ionosphere Ionospheric electron density Thesis Masters MSc 1966 ftrhodesunivcory 2022-12-26T11:22:30Z From Introduction: The minimum in the scalar magnitude of the geographic total field, which lies off the coast of Brazil, allows the mirror points of trapped particles to dip low into the atmosphere over the South Atlantic Ocean, resulting in two regions of maximum intensity of preciptated particles in that region, one from the inner belt and one from the outer. High charged particle fluxes have been observed at low altitudes over these regions by satellites Sputnik 5 and 6 (Ginsburg et al, 1961) and Discoverer 31 (Seward and Kornblum, 1963) amongst others. The more southerly of these two regions acts as a sink for electrons from the outer radiation belt and will be referred to in what follows as the Southern Radiation Anomaly. Gladhill and van Rooyen (1963) predicted that the energy deposited in the upper atmosphere by these charged particles would be sufficient to give rise to enhanced geophysical effects such as auroral emission, X-rays and ionization and heating of the upper atmosphere in this region. Although some of these effects have been correlated with precipitated electrons, no definite relation had until now been established between ionospheric effects and precipitated particles. The aim of this thesis was to investigate such a relationship and the results were extremely successful. It will be shown conclusively in what follows, that the precipitation of electrons can account for the ionospheric disturbances defined by a disturbance criterion at all stations around L=4. Part I describes the exploration of the radiation belts and the magnetosphere with rockets and satellites. The resulting theoretical models based on the observations are discussed. A brief review is given of the work that has been done to date to derive equations for the loss and replenishment of particles in the belts. Because of the complexity of these and the number of doubtful factors involved, a simple model of injection of electrons into the outer belt is devised, giving average values of trapped and precipitated electron fluxes ... Master Thesis South Atlantic Ocean Rhodes University Cory: Repository Sputnik ENVELOPE(66.167,66.167,-70.833,-70.833)
institution Open Polar
collection Rhodes University Cory: Repository
op_collection_id ftrhodesunivcory
language English
topic Electrons
Electron precipitation
Ionosphere
Ionospheric electron density
spellingShingle Electrons
Electron precipitation
Ionosphere
Ionospheric electron density
Torr, Marsha R
Electron precipitation and ionospheric disturbance
topic_facet Electrons
Electron precipitation
Ionosphere
Ionospheric electron density
description From Introduction: The minimum in the scalar magnitude of the geographic total field, which lies off the coast of Brazil, allows the mirror points of trapped particles to dip low into the atmosphere over the South Atlantic Ocean, resulting in two regions of maximum intensity of preciptated particles in that region, one from the inner belt and one from the outer. High charged particle fluxes have been observed at low altitudes over these regions by satellites Sputnik 5 and 6 (Ginsburg et al, 1961) and Discoverer 31 (Seward and Kornblum, 1963) amongst others. The more southerly of these two regions acts as a sink for electrons from the outer radiation belt and will be referred to in what follows as the Southern Radiation Anomaly. Gladhill and van Rooyen (1963) predicted that the energy deposited in the upper atmosphere by these charged particles would be sufficient to give rise to enhanced geophysical effects such as auroral emission, X-rays and ionization and heating of the upper atmosphere in this region. Although some of these effects have been correlated with precipitated electrons, no definite relation had until now been established between ionospheric effects and precipitated particles. The aim of this thesis was to investigate such a relationship and the results were extremely successful. It will be shown conclusively in what follows, that the precipitation of electrons can account for the ionospheric disturbances defined by a disturbance criterion at all stations around L=4. Part I describes the exploration of the radiation belts and the magnetosphere with rockets and satellites. The resulting theoretical models based on the observations are discussed. A brief review is given of the work that has been done to date to derive equations for the loss and replenishment of particles in the belts. Because of the complexity of these and the number of doubtful factors involved, a simple model of injection of electrons into the outer belt is devised, giving average values of trapped and precipitated electron fluxes ...
format Master Thesis
author Torr, Marsha R
author_facet Torr, Marsha R
author_sort Torr, Marsha R
title Electron precipitation and ionospheric disturbance
title_short Electron precipitation and ionospheric disturbance
title_full Electron precipitation and ionospheric disturbance
title_fullStr Electron precipitation and ionospheric disturbance
title_full_unstemmed Electron precipitation and ionospheric disturbance
title_sort electron precipitation and ionospheric disturbance
publisher Rhodes University
publishDate 1966
url http://hdl.handle.net/10962/d1007691
https://corycommons.ru.ac.za/vital/access/manager/Repository/vital:5509
long_lat ENVELOPE(66.167,66.167,-70.833,-70.833)
geographic Sputnik
geographic_facet Sputnik
genre South Atlantic Ocean
genre_facet South Atlantic Ocean
op_relation vital:5509
https://corycommons.ru.ac.za/vital/access/manager/Repository/vital:5509
http://hdl.handle.net/10962/d1007691
op_rights Torr, Marsha R
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