We demonstrate that the optical energy carried by a TE dielectric waveguide mode can be totally transferred into a transverse plasmon mode of a coupled metal nanoparticle chain. Experiments are performed at 1.5 μm. Mode coupling occurs through the evanescent field of the dielectric waveguide mode. Giant coupling effects are evidenced from record coupling lengths as short as ∼560 nm. This result opens the way to nanometer scale devices based on localized plasmons in photonic integrated circuits
Periodically arranged metallic nanowires on top of a waveguide layer show a strong coupling between ...
We report direct coupling of plasmonic and photonic nanowires using ultracompact near-field interact...
Abstract- A chain of gold nanoparticles embedded in a dielectric waveguide is proposed to locally tr...
International audienceWe demonstrate that the optical energy carried by a TE dielectric waveguide mo...
International audienceWe investigate the optical behaviors of metallic nanoparticle (MNP) chains sup...
International audienceWe present near-field measurements of transverse plasmonic wave propagation in...
Electromagnetic energy transfer in plasmon wires consisting of chains of closely spaced metal nanopa...
Abstract – We investigate the optical properties of a plasmonic chain waveguide consisting of a line...
International audienceIn this work, we demonstrate successful interfacing between metallic nanoparti...
We review some of the recent advances in the development of subwavelength plasmonic devices for ma-n...
Experimental evidence of mode-selective evanescent power coupling at telecommunication frequencies w...
We investigate the possibility of using arrays of closely spaced metal nanoparticles as plasmon wave...
International audiencePlasmonics implementation in optical circuits and interconnects requires inter...
We review some of the recent advances in the development of subwavelength plasmonic devices for ma-n...
Using light to exchange information offers large bandwidths and high speeds, but the miniaturization...
Periodically arranged metallic nanowires on top of a waveguide layer show a strong coupling between ...
We report direct coupling of plasmonic and photonic nanowires using ultracompact near-field interact...
Abstract- A chain of gold nanoparticles embedded in a dielectric waveguide is proposed to locally tr...
International audienceWe demonstrate that the optical energy carried by a TE dielectric waveguide mo...
International audienceWe investigate the optical behaviors of metallic nanoparticle (MNP) chains sup...
International audienceWe present near-field measurements of transverse plasmonic wave propagation in...
Electromagnetic energy transfer in plasmon wires consisting of chains of closely spaced metal nanopa...
Abstract – We investigate the optical properties of a plasmonic chain waveguide consisting of a line...
International audienceIn this work, we demonstrate successful interfacing between metallic nanoparti...
We review some of the recent advances in the development of subwavelength plasmonic devices for ma-n...
Experimental evidence of mode-selective evanescent power coupling at telecommunication frequencies w...
We investigate the possibility of using arrays of closely spaced metal nanoparticles as plasmon wave...
International audiencePlasmonics implementation in optical circuits and interconnects requires inter...
We review some of the recent advances in the development of subwavelength plasmonic devices for ma-n...
Using light to exchange information offers large bandwidths and high speeds, but the miniaturization...
Periodically arranged metallic nanowires on top of a waveguide layer show a strong coupling between ...
We report direct coupling of plasmonic and photonic nanowires using ultracompact near-field interact...
Abstract- A chain of gold nanoparticles embedded in a dielectric waveguide is proposed to locally tr...