Physics
Scientific paper
Oct 1986
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1986jgr....9111163t&link_type=abstract
Journal of Geophysical Research (ISSN 0148-0227), vol. 91, Oct. 1, 1986, p. 11163-11178. DOE-sponsored research.
Physics
15
Atmospheric Models, Flux Quantization, Geomagnetic Micropulsations, Standing Waves, Compression Waves, Electron Flux Density, Geomagnetism, Ion Motion, Particle Energy, Pitch (Inclination)
Scientific paper
Model calculations are performed to explain ion and electron flux pulsations observed at geostationary orbit in association with the compressional Pc 5 magnetic pulsation of November 14, 1979. Particle flux pulsation in a symmetric or an antisymmetric standing wave is theoretically described, and the observed flux pulsations are compared with model calculations based on the theory. The results indicate that antisymmetric standing waves are favored for both electrons and protons. For the particles studied here, the flux oscillation is mostly accounted for by the mirror effect associated with the antisymmetric waves. The compressional wave is likely to have an antisymmetric structure along the ambient field line.
Higbie Paul R.
Takahashi Kazue
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