Plasmon resonance enhanced multicolour photodetection by graphene.
basic_science · Level V
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- Record sourced from PubMed, PMID 22146398.
- Also identified by DOI 10.1038/ncomms1589 and PMC identifier 4235953.
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Abstract
Graphene has the potential for high-speed, wide-band photodetection, but only with very low external quantum efficiency and no spectral selectivity. Here we report a dramatic enhancement of the overall quantum efficiency and spectral selectivity that enables multicolour photodetection, by coupling graphene with plasmonic nanostructures. We show that metallic plasmonic nanostructures can be integrated with graphene photodetectors to greatly enhance the photocurrent and external quantum efficiency by up to 1,500%. Plasmonic nanostructures of variable resonance frequencies selectively amplify the photoresponse of graphene to light of different wavelengths, enabling highly specific detection of multicolours. Being atomically thin, graphene photodetectors effectively exploit the local plasmonic enhancement effect to achieve a significant enhancement factor not normally possible with traditional planar semiconductor materials.
Medical subject headings
- Electronics
- Graphite
- Nanostructures
- Nanotechnology
- Surface Plasmon Resonance