We apply the optical nanocircuit concepts to model and design optical nanofilters in realistic plasmonic waveguides of different nature, including strips and groove waveguides. The nanocircuit elements are designed to fit the waveguide geometry, and its equivalent impedance is analytically calculated by substituting the role of the conduction current with displacement current. The effect of plasmonic waveguide walls is rigorously modeled in terms of an extra nanocircuit loading that is included in our model.We show via numerical results that the nanocircuit approachmay be effectively applied to the design of nanofilters, analogous to familiar concepts at radio-frequencies
We propose a submicron plasmonic wavelength filtering/demultiplexing structure based on aperture-cou...
In the last few years, the perfect absorption of light has become an important research topic due to...
textIn this work a Finite Difference Time Domain (FDTD) simulation is employed to explore local fiel...
We apply the optical nanocircuit concepts to model and design optical nanofilters in realistic plasm...
We theoretically and numerically study the design of optical lumped nanofiltering devices in the f...
Following our recent idea of using plasmonic and nonplasmonic nanoparticles as nanoinductors and nan...
Here we explore the radiation features of optical nanoantennas, analyzing the concepts of optical in...
Manipulating light at nano-scale is usually shadowed by the diffraction limit. Recently, plasmonics ...
The anomalous interaction of light with plasmonic materials has fascinated scientists and non-scient...
Light, as an information carrier, is blessed with a number of different properties that make it a st...
A novel and simple plasmonic filter based on metal-insulator-metal plasmonic waveguides with a nanod...
Although photonics offers an attractive solution to the speed limitation of electronics, reducing th...
Recently, many researchers are much interested in the construction of optical circuits on subwavelen...
Over the last few years, scaling in deep submicron technologies has shifted the paradigm from device...
Abstract A metallic nanocylinder array was previously proposed for the propagation of localized ligh...
We propose a submicron plasmonic wavelength filtering/demultiplexing structure based on aperture-cou...
In the last few years, the perfect absorption of light has become an important research topic due to...
textIn this work a Finite Difference Time Domain (FDTD) simulation is employed to explore local fiel...
We apply the optical nanocircuit concepts to model and design optical nanofilters in realistic plasm...
We theoretically and numerically study the design of optical lumped nanofiltering devices in the f...
Following our recent idea of using plasmonic and nonplasmonic nanoparticles as nanoinductors and nan...
Here we explore the radiation features of optical nanoantennas, analyzing the concepts of optical in...
Manipulating light at nano-scale is usually shadowed by the diffraction limit. Recently, plasmonics ...
The anomalous interaction of light with plasmonic materials has fascinated scientists and non-scient...
Light, as an information carrier, is blessed with a number of different properties that make it a st...
A novel and simple plasmonic filter based on metal-insulator-metal plasmonic waveguides with a nanod...
Although photonics offers an attractive solution to the speed limitation of electronics, reducing th...
Recently, many researchers are much interested in the construction of optical circuits on subwavelen...
Over the last few years, scaling in deep submicron technologies has shifted the paradigm from device...
Abstract A metallic nanocylinder array was previously proposed for the propagation of localized ligh...
We propose a submicron plasmonic wavelength filtering/demultiplexing structure based on aperture-cou...
In the last few years, the perfect absorption of light has become an important research topic due to...
textIn this work a Finite Difference Time Domain (FDTD) simulation is employed to explore local fiel...