Title of article :
Towards multi-dimensional space weather modeling for energetic oxygen ions in the earthʹs inner magnetosphere: Equilibrium configuration Original Research Article
Author/Authors :
Walther N. Spjeldvik، نويسنده , , Sebastien Bourdarie، نويسنده , , Daniel Boscher، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2002
Pages :
4
From page :
2839
To page :
2842
Abstract :
We report the first 3+1 dimensional model development for energetic atomic oxygen ions in the Earthʹs radiation belts. Energetic Oxygen ions cans be supplied to the Earthʹs Inner magnetosphere from the sun (as a component of solar wind and solar energetic particles), from anomalous cosmic rays, and from acceleration processes acting on ionospheric atomic oxygen ions. We have built a multi-dimensional oxygen ion model in the following free parameters: geomagnetic L-shell, the magnetic moment, the second adiabatic invariant, and the discrete charge state number. Quiet time, steady state oxygen ion distributions have been obtained numerically from an assumed outer radiation zone boundary condition at L=7, average values of the radial diffusion coefficients, and standard values for the exospheric neutral densities due to the MSIS-86 upper atmosphere and exosphere neutral thermal particle density model. Average distributions of free electrons in the plasmasphere were also assumed with a mean plasmapause location just beyond L=4. We included the six lowest ionic charge states of atomic oxygen (16O) based on an existing charge exchange cross section compilation by Spjeldvik and Fritz (1978). Computed oxygen ion distributions include the resulting equilibrium structure of energy oxygen ions between 10 KeV and 100 MeV.
Journal title :
Advances in Space Research
Serial Year :
2002
Journal title :
Advances in Space Research
Record number :
1128498
Link To Document :
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