article Open AccessTop 10% cited
Space, atmospheric, and terrestrial radiation environments
IEEE Transactions on Nuclear Science · 2003 · Vol. 50(3) · pp. 466–482
J.L. Barth✉(Goddard Space Flight Center)C. S. Dyer(Qinetiq (United Kingdom))E. G. Stassinopoulos(Goddard Space Flight Center)
Abstract
The progress on developing models of the radiation environment since the 1960s is reviewed with emphasis on models that can be applied to predicting the performance of microelectronics used in spacecraft and instruments. Space, atmospheric, and ground environments are included. It is shown that models must be adapted continually to account for increased understanding of the dynamics of the radiation environment and the changes in microelectronics technology. The IEEE Nuclear and Space Radiation Effects Conference is a vital forum to report model progress to the radiation effects research community.
Radiation Effects in ElectronicsRadiation Detection and Scintillator TechnologiesRadiation Therapy and DosimetryMicroelectronicsSpace environmentSpace radiationSpacecraftRadiationAerospace engineeringSpace explorationSpace technologySpace (punctuation)Systems engineering
Citations
343
FWCI
8.12
field-weighted impact
References
94
Percentile
98%
vs. same field & year
Citations per year
References
Alpha-particle-induced soft errors in dynamic memories
IEEE Transactions on Electron Devices · 1979 · 847 citations
Satellite Anomalies from Galactic Cosmic Rays
IEEE Transactions on Nuclear Science · 1975 · 404 citations
Single event upset at ground level
IEEE Transactions on Nuclear Science · 1996 · 607 citations
CREME96: A Revision of the Cosmic Ray Effects on Micro-Electronics Code
IEEE Transactions on Nuclear Science · 1997 · 619 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
