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 POLYMER-BASED NANOPLASMONIC COMPONENTS AND DEVICES 

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  Efficient excitation of dielectric-loaded surface plasmon-polariton waveguide modes at telecommunication wavelengths
PHYSICAL REVIEW B 78, 165431 (November 2008) see the article

Dielectric-loaded surface plasmon polariton waveguides: figures of merit and mode characterization in the imaging and Fourier planes
PHYSICAL REVIEW B, to be published soon.

Novel efficient design of Y-splitter for surface plasmon polariton applications
OPTICS EXPRESS 16, 14369-14373 (September 2008) see the article

Bend- and splitting loss of dielectric-loaded surface plasmon-polariton waveguides
OPTICS EXPRESS 16, 13585-13595 (August 2008) see the article

Three-dimensional numerical modeling of photonic integration with dielectric-loaded SPP waveguides
PHYSICAL REVIEW B 78, 045425 (July 2008) see the article

Dielectric-loaded surface plasmon-polariton waveguides at telecommunication wavelengths: Excitation and characterization.
APPLIED PHYSICS LETTERS 92, 011124 (January 2008) see the article

Polymer-metal waveguides characterization by Fourier plane leakage radiation microscopy APPLIED PHYSICS LETTERS 91, 243102 (December 2007) see the article

Focusing and directing of surface plasmon polaritons by curved chains of nanoparticles
OPTICS EXPRESS 15, 16667-16680 (November 2007) see the article

Surface-plasmon hopping along coupled coplanar cavities
PHYSICAL REVIEW B 76, 113405 (June 2007) see the article

Rapid laser prototyping of plasmonic components
APPLIED PHYSICS A 89, 321–325 (June 2007) see the article

Theoretical analysis of dielectric-loaded surface plasmon-polariton waveguides
PHYSICAL REVIEW B 75, 245405 (June 2007) see the article

Passive photonic elements based on dielectric-loaded surface plasmon polariton waveguides
APPLIED PHYSICS LETTERS 90, 211101 (May 2007) see the article

 

 
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