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Title: Oxygen charge state abundance in the inner magnetosphere

Journal Article · · AIP Conference Proceedings
DOI:https://doi.org/10.1063/1.51527· OSTI ID:451686
;  [1];  [2];  [3]
  1. Aerospace Corp., Los Angeles, California 90009 (United States)
  2. Rutherford Appleton Laboratories, Chilton-Didcot, (Great Britain)
  3. Max-Planck-Institute for Aeronomy, Katelenburg-Lindau (Germany)

The CRRES Magnetospheric Ion Composition Sensor (MICS) was used to obtain the relative oxygen charge state abundances in the earth{close_quote}s inner magnetosphere (3{lt}{ital L}{lt}7.5). These abundances were obtained for average and quiet ({ital Kp}{le}2+,{vert_bar}{ital D}{sub {ital ST}}{vert_bar}{lt}11) conditions. They are presented as normalized spectra and compared to the predictions of Spjeldvik and Fritz (1978). These comparisons show that the observed spectra agree best with the Spjeldvik and Fritz predictions that assume an O{sup +} source, at the high {ital L} boundary in their model, for oxygen with {ital Q}{le}+3 but agree better with their predictions for a solar wind source, O{sup +6}, for oxygen with {ital Q}{gt}+3 on average. As expected, O{sup +} is the dominant oxygen ion at all times in the inner magnetosphere for energies {gt}60 keV/Q. During average conditions the {ital Q}{ge}+4 ions have fluxes comparable to O{sup +3} in the {ital L}=4.5{endash}7.5 region and are about 50{percent} of the O{sup +3} fluxes in the {ital L}=3{endash}5 regions. Thus, the average O{sup +3} fluxes appear to represent a transition state between ionospheric and solar wind source oxygen. {copyright} {ital 1996 American Institute of Physics.}

OSTI ID:
451686
Report Number(s):
CONF-9408182-; ISSN 0094-243X; TRN: 97:005725
Journal Information:
AIP Conference Proceedings, Vol. 383, Issue 1; Conference: 10. Taos workshop on the earth`s trapped particle environment, Taos, NM (United States), 14-19 Aug 1994; Other Information: PBD: Jul 1996
Country of Publication:
United States
Language:
English

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