Mechanism for the anomalous degradation of proton- or electron-irradiated silicon solar cells
Author:
Publisher
Elsevier BV
Subject
Surfaces, Coatings and Films,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials
Reference14 articles.
1. A detailed model to improve the radiation-resistance of Si space solar cells
2. Radiation degradation of large fluence irradiated space silicon solar cells
3. Deep level analysis of radiation-induced defects in Si crystals and solar cells
4. Mechanism for the anomalous degradation of silicon space solar cells
5. Generation of vacancy-type point defects in single collision cascades during swift-ion bombardment of silicon
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2. Modeling the effect of 1MeV electron irradiation on the performance of n+–p–p+ silicon space solar cells;Radiation Physics and Chemistry;2016-06
3. Silicon space solar cells: progression and radiation-resistance analysis;Journal of the Korean Physical Society;2016-02
4. Numerical Simulation of the Type Inversion in n+-p-p+ Si Solar Cells, Used for Space Applications, under 1 MeV Electron Irradiation;Energy Procedia;2014
5. Radiation-induced junction formation behavior of boron-doped Czochralski and float zone silicon crystals under 3 MeV proton irradiation;Journal of Applied Physics;2003-11
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