Light trapping in ultrathin plasmonic solar cells

Publication date

2010

Authors

Ferry, V.E.
Verschuuren, M.A.
Li, FangISNI 0000000524044988
Verhagen, E.
Walters, R.J.
Schropp, R. E.I.ISNI 000000008094399X
Atwater, H.A.
Polman, AlbertISNI 0000000396660224

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Article
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Abstract

We report on the design, fabrication, and measurement of ultrathin film a-Si:H solar cells with nanostructured plasmonic back contacts, which demonstrate enhanced short circuit current densities compared to cells having flat or randomly textured back contacts. The primary photocurrent enhancement occurs in the spectral range from 550 nm to 800 nm. We use angle-resolved photocurrent spectroscopy to confirm that the enhanced absorption is due to coupling to guided modes supported by the cell. Full-field electromagnetic simulation of the absorption in the active a-Si:H layer agrees well with the experimental results. Furthermore, the nanopatterns were fabricated via an inexpensive, scalable, and precise nanopatterning method. These results should guide design of optimized, non-random nanostructured back reflectors for thin film solar cells

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Citation

Ferry, V E, Verschuuren, M A, Li, H B T, Verhagen, E, Walters, R J, Schropp, R E I, Atwater, H A & Polman, A 2010, 'Light trapping in ultrathin plasmonic solar cells', Optics Express, vol. 18, no. S2, pp. A237-A245. https://doi.org/10.1364/OE.18.00A237