Résumé
Light trapping structures are a promising approach to increase light absorption in ultrathin absorbers of interest for photovoltaic applications. To be integrated within real systems, their fabrication approach need to be simple and scalable, insuring that the gain in efficiency is worth the extra manufacturing steps. Here, we optimize through simulation using a RCWA code, a variety of 1D and 2D structures that can be fabricated with such simple and scalable techniques. In particular, we investigate the effect 1D and 2D gratings fabricated by Nanoimprint Lithography, onto Bragg mirrors that could be made using simple liquid process approaches. The optimized structures exhibit a significant gain in absorption with almost twice as much absorption in the wavelength range 0.5 to 1 micron, compared to a bare absorbing film of GaAs chosen as our reference. We also identify the various phenomena behind the absorption peaks observed and study the angular dependency of absorption with these structures.
| langue originale | Anglais |
|---|---|
| titre | Physics, Simulation, and Photonic Engineering of Photovoltaic Devices II |
| Les DOIs | |
| état | Publié - 10 juin 2013 |
| Evénement | 2nd Symposium on Physics, Simulation, and Photonic Engineering of Photovoltaic Devices - San Francisco, CA, États-Unis Durée: 3 févr. 2013 → 7 févr. 2013 |
Série de publications
| Nom | Proceedings of SPIE - The International Society for Optical Engineering |
|---|---|
| Volume | 8620 |
| ISSN (imprimé) | 0277-786X |
Une conférence
| Une conférence | 2nd Symposium on Physics, Simulation, and Photonic Engineering of Photovoltaic Devices |
|---|---|
| Pays/Territoire | États-Unis |
| La ville | San Francisco, CA |
| période | 3/02/13 → 7/02/13 |
SDG des Nations Unies
Ce résultat contribue à ou aux Objectifs de développement durable suivants
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SDG 7 Énergie abordable et propre
Empreinte digitale
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