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1.
Opt Lett ; 36(12): 2312-4, 2011 Jun 15.
Artigo em Inglês | MEDLINE | ID: mdl-21686004

RESUMO

In this Letter, we propose a hybrid plasmonic nanosystem consisting of a silver cladding layer with a semicylinder bump on top of InGaAsP nanowire. Because of the coupling between the dielectric waveguide mode and surface plasmon polariton mode, the hybrid plasmonic mode can exhibit low loss with strong field localization. The finite element method numerical simulations are employed to evaluate the performances of the hybrid mode. In order to achieve the lossless propagation of the hybrid mode with the mode area of 0.0058(λ²/4) at 1.55 µm, the material gain of 200 nm × 300 nm InGaAsP nanowire should reach 1223 cm⁻¹.

2.
Opt Lett ; 35(20): 3408-10, 2010 Oct 15.
Artigo em Inglês | MEDLINE | ID: mdl-20967082

RESUMO

We propose a hybrid waveguide-plasmon system consisting of gold pillar arrays on top of a dielectric waveguide. The formation of extraordinary transmissions induced by the hybrid waveguide-plasmon resonances is investigated by rigorous coupled-wave analysis. The characteristics of the hybrid resonances can be predicted by introducing the photonic crystal slab theory. Extremely narrow absorption peaks and the electromagnetically induced transparency-like optical property are demonstrated in our hybrid system.

3.
Opt Lett ; 34(23): 3725-7, 2009 Dec 01.
Artigo em Inglês | MEDLINE | ID: mdl-19953175

RESUMO

Metallic back structures with one-dimensional periodic nanoridges attached to a thin-film amorphous Si (a-Si) solar cell are numerically studied. At the interfaces between a-Si and metal materials, the excitation of surface-plasmon polaritons leads to obvious absorption enhancements in a wide near-IR range for different ridge shapes and periods. The highest enhancement factor of the cell external quantum efficiency is estimated to be 3.32. The optimized structure can achieve an increase of 17.12% in the cell efficiency.

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