Nanoparticle-induced light scattering for improved performance of quantum-well solar cells

We report on the improved performance of In P ∕ In Ga As P quantum-well waveguide solar cells via light scattering from deposited dielectric or metal nanoparticles. The integration of metal or dielectric nanoparticles above the quantum-well solar cell device is shown to couple normally incident ligh...

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Veröffentlicht in:Applied physics letters 2008-09, Vol.93 (9), p.091107-091107-3
Hauptverfasser: Derkacs, D., Chen, W. V., Matheu, P. M., Lim, S. H., Yu, P. K. L., Yu, E. T.
Format: Artikel
Sprache:eng
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Zusammenfassung:We report on the improved performance of In P ∕ In Ga As P quantum-well waveguide solar cells via light scattering from deposited dielectric or metal nanoparticles. The integration of metal or dielectric nanoparticles above the quantum-well solar cell device is shown to couple normally incident light into lateral optical propagation paths, with optical confinement provided by the refractive index contrast between the quantum-well layers and surrounding material. With minimal optimization, short-circuit current density increases of 12.9% and 7.3% and power conversion efficiency increases of 17% and 1% are observed for silica and Au nanoparticles, respectively.
ISSN:0003-6951
1077-3118
DOI:10.1063/1.2973988