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Asymmetry in photocurrent enhancement by plasmonic nanoparticle arrays located on the front or on the rear of solar cells

Beck, Fiona; Mokkapati, S.; Polman, A.; Catchpole, Kylie

Description

We show experimentally that there is asymmetry in photocurrent enhancement by Agnanoparticle arrays located on the front or on the rear of solar cells. The scattering cross-section calculated for front- and rear-located nanoparticles can differ by up to a factor of 3.7, but the coupling efficiency remains the same. We attribute this to differences in the electric field strength and show that the normalized scattering cross-section of a front-located nanoparticle varies from two to eight...[Show more]

CollectionsANU Research Publications
Date published: 2010-01-20
Type: Journal article
URI: http://hdl.handle.net/1885/16981
Source: Applied Physics Letters
DOI: 10.1063/1.3292020
Access Rights: Open Access

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