We propose and numerically investigate a novel kind of nanoscale plasmonic wavelength demultiplexing (WDM) structure based on channel drop filters in metal-insulator-metal waveguide with reflection nanocavities. By using finite-difference time-domain simulations, it is found that the transmission efficiency of the channel drop filter can be significantly enhanced by selecting the proper distance between the drop and reflection cavities. The result can be exactly analyzed by the temporal coupled-mode theory. According to this principle, a nanoscale triple-wavelength demultiplexer with high drop efficiencies is designed. The proposed structure can find more applications for the ultra-compact WDM systems in highly integrated optical circuits. ...
A multipurpose and ultra-compact nanoplasmonic wavelength filter based on stub structure in a metal-...
We propose and experimentally demonstrate a demultiplexer with point-defect resonators and a reflect...
The two channels of plasmonic filter structure are selective based, on a nanocavity, that proposed, ...
We propose and numerically investigate a novel kind of nanoscale plasmonic wavelength demultiplexing...
Nanoplasmonic wavelength demultiplexing (WDM) structures based on metal-insulator-metal waveguides a...
In this paper, we have numerically investigated a novel kind of ultra-compact wavelength demultiplex...
A novel kind of plasmonic wavelength demultiplexers (WDMs) based on two-dimensional metal-insulator-...
We propose and numerically investigate a plasmonic triple-wavelength demultiplexing structure based ...
The tunable multi-channel wavelength demultiplexer (WDM) based on metal-insulator-metal plasmonic na...
We propose a submicron plasmonic wavelength filtering/demultiplexing structure based on aperture-cou...
In this paper, we have proposed two novel plasmonic demultiplexing structures based on metal-insulat...
Abstract The authors propose a nanoplasmonic structure based on metal–insulator–metal (MIM) waveguid...
A compact plasmonic wavelength demultiplexing structure based on arrayed metal-insulator-metal (MIM)...
A compact wavelength demultiplexing structure based on arrayed metal-insulator-metal (MIM) slot cavi...
A compact wavelength demultiplexing structure based on arrayed metal-insulator-metal (MIM) slot cavi...
A multipurpose and ultra-compact nanoplasmonic wavelength filter based on stub structure in a metal-...
We propose and experimentally demonstrate a demultiplexer with point-defect resonators and a reflect...
The two channels of plasmonic filter structure are selective based, on a nanocavity, that proposed, ...
We propose and numerically investigate a novel kind of nanoscale plasmonic wavelength demultiplexing...
Nanoplasmonic wavelength demultiplexing (WDM) structures based on metal-insulator-metal waveguides a...
In this paper, we have numerically investigated a novel kind of ultra-compact wavelength demultiplex...
A novel kind of plasmonic wavelength demultiplexers (WDMs) based on two-dimensional metal-insulator-...
We propose and numerically investigate a plasmonic triple-wavelength demultiplexing structure based ...
The tunable multi-channel wavelength demultiplexer (WDM) based on metal-insulator-metal plasmonic na...
We propose a submicron plasmonic wavelength filtering/demultiplexing structure based on aperture-cou...
In this paper, we have proposed two novel plasmonic demultiplexing structures based on metal-insulat...
Abstract The authors propose a nanoplasmonic structure based on metal–insulator–metal (MIM) waveguid...
A compact plasmonic wavelength demultiplexing structure based on arrayed metal-insulator-metal (MIM)...
A compact wavelength demultiplexing structure based on arrayed metal-insulator-metal (MIM) slot cavi...
A compact wavelength demultiplexing structure based on arrayed metal-insulator-metal (MIM) slot cavi...
A multipurpose and ultra-compact nanoplasmonic wavelength filter based on stub structure in a metal-...
We propose and experimentally demonstrate a demultiplexer with point-defect resonators and a reflect...
The two channels of plasmonic filter structure are selective based, on a nanocavity, that proposed, ...