A coordinated ground-based and IMAGE satellite study of quiet-time plasmaspheric density profiles

Author:

Dent Zoë C.1,Mann I. R.1,Menk F. W.2,Goldstein J.3,Wilford C. R.4,Clilverd M. A.5,Ozeke L. G.1

Affiliation:

1. Department of Physics; University of York; Heslington, York UK

2. School of Mathematical and Physical Sciences and CRC for Satellite Systems; The University of Newcastle; Newcastle NSW Australia

3. Department of Physics and Astronomy; Rice University; Texas USA

4. Space and Atmosphere Research Group, Department of Applied Mathematics; University of Sheffield; Sheffield UK

5. British Antarctic Survey; Cambridge UK

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

Reference21 articles.

1. A mathematical model of the Earth's plasmasphere and its application in a study of He+ at L = 3;Bailey;Ann. Geophys.,1990

2. Whistler evidence of a “knee” in the magnetospheric ionozation density profile;Carpenter;J. Geophys. Res.,1963

3. An ISEE/whistler model of equatorial electron density in the magnetosphere;Carpenter;J. Geophys. Res.,1992

4. Erosion and recovery of the plasmasphere in the plasmapause region;Carpenter;Space Sci. Rev.,1997

5. The annual variation in quiet time plasmaspheric electron density, determined from whistler mode group delays;Clilverd;Planet. Space Sci.,1991

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