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Real-time transmission Mueller polarimetry on hydrogenated polymorphous silicon under current injection

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  • Institut polytechnique de Paris

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Résumé

We report on the use of an innovative optical characterization technique - real-time Mueller polarimetric imaging in transmission - for the characterization of thin-film silicon solar cells. In this work, we used this technique to monitor the evolution of optical retardance induced by the mechanical stresses in hydrogenated amorphous and polymorphous silicon (a-Si : H and pm-Si : H) p-i-n (PIN) solar cells. Under current injection of 200 mA cm-2, the retardance of the pm-Si : H PIN solar cells decreased, while that of the a-Si : H PIN solar cells showed no significant change. After the current injection, the pm-Si : H PIN solar cells showed dramatic macroscopic changes on a scale of tens of micrometres, such as local peel-off and delamination from the substrate. Our results demonstrate that current injection introduces local stress relaxation, which can be efficiently monitored prior to irreversible damage from a decrease in the retardance of the pm-Si : H PIN solar cells.

langue originaleAnglais
Numéro d'article045304
journalJournal of Physics D: Applied Physics
Volume46
Numéro de publication4
Les DOIs
étatPublié - 30 janv. 2013

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