1975Applied Physics LettersRequires access

Trap saturation in silicon solar cells

E. Fabre, M. Mautref, A. Mircéa

Open publisher page 48 citations

Abstract

The spectral response of silicon solar cells has been studied under different conditions of excitation. The photocurrent variations are not linear with incident flux, and the minority-carrier diffusion length increases under solar illumination because of trap saturation. It is thus possible to fabricate efficient solar cells with a lower-quality material.

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What this paper is about

The spectral response of silicon solar cells has been studied under different conditions of excitation. The photocurrent variations are not linear with incident flux, and the minority-carrier diffusion length increases under solar illumination because of trap saturation. It is thus possible to fabricate efficient solar cells with a lower-quality material.

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Available abstract

The spectral response of silicon solar cells has been studied under different conditions of excitation. The photocurrent variations are not linear with incident flux, and the minority-carrier diffusion length increases under solar illumination because of trap saturation. It is thus possible to fabricate efficient solar cells with a lower-quality material.

Key concepts: Silicon, Saturation (graph theory), Materials science, Theory of solar cells, Photocurrent, Saturation current, Excitation, Optoelectronics

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