In this work we propose a new approach for the design of resonant structures aiming at wavelength filtering applications. The structure consists of a subwavelength metal-insulator-metal (MIM) waveguide presenting cascaded cavities transversely arranged in the midpoint between the input and output ports. An extra degree of freedom added to this design consists in tilting the cavities around their midpoints which, besides effectively increasing the quality factor of the cavity, helps extending its range of applications by tuning multiple wavelengths.INCT - INOFFAPESPCNP
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
In this paper, we have numerically investigated a novel kind of ultra-compact wavelength demultiplex...
The prospect of controlling the interaction of light with matter at nanoscale has been widely studie...
This work proposes a completely new approach for the design of resonant structures aiming at wavelen...
In this paper, we present novel mechanisms for tuning and controlling the response of novel plasmoni...
Abstract Plasmons in nanometer structures are caused by the interaction between electromagnetic wave...
A multipurpose and ultra-compact nanoplasmonic wavelength filter based on stub structure in a metal-...
We report widely tunable waveguide filters based on long-range surface plasmon polaritons. A 0.004 v...
We report thermally tunable optical bandpass filters based on long-range surface plasmon polariton w...
Surface plasmon resonance has become a widely accepted optical technique for studying biological and...
© 2013 IEEE. In this paper, a novel planar waveguide based on spoof surface plasmon polaritons (SSPP...
Plasmonics enables the realization of new optical components. Here, we report yet another plasmonic ...
A new filter structure and optical field modulator with ultra-high resolution based on plasmonic nan...
A structure of two dimensional T-shaped metal–insulator–metal waveguide with dual-nanocavity is prop...
A compact wavelength demultiplexing structure based on arrayed metal-insulator-metal (MIM) slot cavi...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
In this paper, we have numerically investigated a novel kind of ultra-compact wavelength demultiplex...
The prospect of controlling the interaction of light with matter at nanoscale has been widely studie...
This work proposes a completely new approach for the design of resonant structures aiming at wavelen...
In this paper, we present novel mechanisms for tuning and controlling the response of novel plasmoni...
Abstract Plasmons in nanometer structures are caused by the interaction between electromagnetic wave...
A multipurpose and ultra-compact nanoplasmonic wavelength filter based on stub structure in a metal-...
We report widely tunable waveguide filters based on long-range surface plasmon polaritons. A 0.004 v...
We report thermally tunable optical bandpass filters based on long-range surface plasmon polariton w...
Surface plasmon resonance has become a widely accepted optical technique for studying biological and...
© 2013 IEEE. In this paper, a novel planar waveguide based on spoof surface plasmon polaritons (SSPP...
Plasmonics enables the realization of new optical components. Here, we report yet another plasmonic ...
A new filter structure and optical field modulator with ultra-high resolution based on plasmonic nan...
A structure of two dimensional T-shaped metal–insulator–metal waveguide with dual-nanocavity is prop...
A compact wavelength demultiplexing structure based on arrayed metal-insulator-metal (MIM) slot cavi...
Guiding optical energy in metal–dielectric nanostructures by the use of plasmon excitations known as...
In this paper, we have numerically investigated a novel kind of ultra-compact wavelength demultiplex...
The prospect of controlling the interaction of light with matter at nanoscale has been widely studie...