A noise model for the evaluation of defect states in solar cells

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Abstract

A theoretical model, combining trapping/detrapping and recombination mechanisms, is formulated to explain the origin of random current fluctuations in silicon-based solar cells. In this framework, the comparison between dark and photo-induced noise allows the determination of important electronic parameters of the defect states. A detailed analysis of the electric noise, at different temperatures and for different illumination levels, is reported for crystalline silicon-based solar cells, in the pristine form and after artificial degradation with high energy protons. The evolution of the dominating defect properties is studied through noise spectroscopy.

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Landi, G., Barone, C., Mauro, C., Neitzert, H. C., & Pagano, S. (2016). A noise model for the evaluation of defect states in solar cells. Scientific Reports, 6. https://doi.org/10.1038/srep29685

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