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Modelling cosmic ray intensities along the Ulysses trajectory

Authors :
D. C. Ndiitwani
S. E. S. Ferreira
M. S. Potgieter
B. Heber
Source :
Annales Geophysicae, Vol 23, Pp 1061-1070 (2005)
Publication Year :
2005
Publisher :
Copernicus Publications, 2005.

Abstract

Time dependent cosmic ray modulation in the inner heliosphere is studied by comparing results from a 2-D, time-dependent cosmic ray transport model with Ulysses observations. A compound approach, which combines the effects of the global changes in the heliospheric magnetic field magnitude with drifts to establish a realistic time-dependence, in the diffusion and drift coefficients, are used. We show that this model results in realistic cosmic ray modulation from the Ulysses launch (1990) until recently (2004) when compared to 2.5-GV electron and proton and 1.2-GV electron and Helium observations from this spacecraft. This approach is also applied to compute radial gradients present in 2.5-GV cosmic ray electron and protons in the inner heliosphere. The observed latitude dependence for both positive and negative charged particles during both the fast latitude scan periods, corresponding to different solar activity conditions, could also be realistically computed. For this an additional reduction in particle drifts (compared to diffusion) toward solar maximum is needed. This results in a realistic charge-sign dependent modulation at solar maximum and the model is also applied to predict charge-sign dependent modulation up to the next expected solar minimum.

Details

Language :
English
ISSN :
09927689 and 14320576
Volume :
23
Database :
Directory of Open Access Journals
Journal :
Annales Geophysicae
Publication Type :
Academic Journal
Accession number :
edsdoj.87d7ac7e27143e88dd12e10f411a51d
Document Type :
article
Full Text :
https://doi.org/10.5194/angeo-23-1061-2005