An all-optical tunable nanoscale wavelength-division multiplexing device is realized theoretically based on a plasmonic microstructure, which is composed of a silver film coated with a monolayer colloidal crystal made of cholesteryl iodide-doped polystyrene. The physical mechanism is attributed to the variation of surface plasmon polariton modes and guided modes caused by pump-laser-induced refractive index change of cholesteryl iodide. An up to 90-nm shift in the resonant wavelength of optical channels can be reached under excitation of a 500 mJ/cm(2) pump laser. The number of optical channels can be tuned by adjusting the structure parameters of the monolayer colloidal crystal. This may open a new way for the study of integrated photonic ...
The ability of metallic nanostructures to support surface plasmon excitations is widely exploited no...
Colloidal lithography with polystyrene spheres allows for the fabrication of hybrid polymer/metal tw...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...
We report a tunable wavelength-division multiplexing (WDM) structure based on two-dimensional silver...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
A 2D polystyrene colloidal crystal self-assembled on a flat gold surface supports multiple photonic ...
plasmon dispersion in hole arrays Wayne Dickson A nanostructured optical system based on polaritonic...
The enhanced optical properties of metal films periodically perforated with an array of sub-waveleng...
The tunable multi-channel wavelength demultiplexer (WDM) based on metal-insulator-metal plasmonic na...
Two-dimensional slab hybrid metal-dielectric photonic crystals, which are prepared by assembling pol...
We report a strategy for achieving ultrahigh-contrast all-optical diodes by using tunable surface pl...
We have developed a method to fabricate a silver nano-mouth array via a cost-effective inverted hemi...
We use two parallel nano-slits in a silver film to form a surface plasmon Mach-Zehnder interferomete...
Plasmonics holds promise for the realization of miniaturized photonic devices and circuits in which ...
We demonstrate a surface plasmon-polariton (SPP) waveguide all-optical switch that combines the uniq...
The ability of metallic nanostructures to support surface plasmon excitations is widely exploited no...
Colloidal lithography with polystyrene spheres allows for the fabrication of hybrid polymer/metal tw...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...
We report a tunable wavelength-division multiplexing (WDM) structure based on two-dimensional silver...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
A 2D polystyrene colloidal crystal self-assembled on a flat gold surface supports multiple photonic ...
plasmon dispersion in hole arrays Wayne Dickson A nanostructured optical system based on polaritonic...
The enhanced optical properties of metal films periodically perforated with an array of sub-waveleng...
The tunable multi-channel wavelength demultiplexer (WDM) based on metal-insulator-metal plasmonic na...
Two-dimensional slab hybrid metal-dielectric photonic crystals, which are prepared by assembling pol...
We report a strategy for achieving ultrahigh-contrast all-optical diodes by using tunable surface pl...
We have developed a method to fabricate a silver nano-mouth array via a cost-effective inverted hemi...
We use two parallel nano-slits in a silver film to form a surface plasmon Mach-Zehnder interferomete...
Plasmonics holds promise for the realization of miniaturized photonic devices and circuits in which ...
We demonstrate a surface plasmon-polariton (SPP) waveguide all-optical switch that combines the uniq...
The ability of metallic nanostructures to support surface plasmon excitations is widely exploited no...
Colloidal lithography with polystyrene spheres allows for the fabrication of hybrid polymer/metal tw...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...