A model for proton-irradiated GaAs solar cells
J. W. Wilson, G. H. Walker, R. A. Outlaw, Larry Stock
Abstract
J. W. Wilson, G. H. Walker, R. A. Outlaw, Larry Stock
Abstract
A simple model for proton radiation damage in GaAs heteroface solar cells is developed. The model includes the effects of spatial nonuniformity of low energy proton damage. Agreement between the model and experimental proton damage data for GaAs heteroface solar cells is satisfactory. An extension of the model to include angular isotropy, as is appropriate for protons in space, is shown to result in significantly less cell damage than for normal proton incidence.
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A simple model for proton radiation damage in GaAs heteroface solar cells is developed. The model includes the effects of spatial nonuniformity of low energy proton damage. Agreement between the model and experimental proton damage data for GaAs heteroface solar cells is satisfactory. An extension of the model to include angular isotropy, as is appropriate for protons in space, is shown to result in significantly less cell damage than for normal proton incidence.
Key concepts: Proton, Isotropy, Irradiation, Radiation damage, Radiation, Gallium arsenide, Physics, Materials science