We propose a novel dual-band resonator nanoantenna array based on fence-shaped nanoparticles for infrared detection applications. Here, we demonstrate that the proposed antenna has a dual-band spectral response, and the locations of these resonances can be adjusted by varying the geometrical dimensions. To enable further discussions on the physical origin of the dual-band resonance behavior of the structure, we determine the parameter dependence of this nanoparticle-based nanoantenna array. Furthermore, we analyze the field distributions of the structure at the corresponding resonance frequencies. Finally, we show the sensitivity of the resonant behavior to the refractive index and thickness of the dielectric load by embedding the structure...
Aperture based sensing platforms can be useful for both gas and bio-sensing applications. In this st...
Optical antennas are nanoscale metallic structures which act as effective receivers, transmitters an...
We propose a new design of optical nanoantennas and numerically study their optical properties. The ...
We propose a novel dual-band resonator nanoantenna array based on fence-shaped nanoparticles for inf...
In this study, we present the optical properties of a plasmonic nanoantenna array based on H-shaped ...
Recent advances in nanofabrication and computational electromagnetic design techniques have enabled ...
Plasmonic metamaterials based on metal-dielectric nanostructures exhibit unique optical properties s...
In this paper, we present numerical and experimental results on optical properties of a multi-resona...
We present computational analysis of nanoantenna arrays for imaging and sensing applications at opti...
Tailoring nanoscale light concentration and electromagnetic near-field enhancement over a broad spec...
This chapter presents a theoretical analysis and experimental study with regard to nanoantennas for ...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...
Nanoantenna arrays with resonances in the mid-infrared spectral range enable a high sensitivity in s...
We report on tuning the plasmonic properties of gold nanoantenna arrays resonant in the infrared (IR...
We report a study of the infrared response by localized surface plasmon resonance (LSPR) modes in go...
Aperture based sensing platforms can be useful for both gas and bio-sensing applications. In this st...
Optical antennas are nanoscale metallic structures which act as effective receivers, transmitters an...
We propose a new design of optical nanoantennas and numerically study their optical properties. The ...
We propose a novel dual-band resonator nanoantenna array based on fence-shaped nanoparticles for inf...
In this study, we present the optical properties of a plasmonic nanoantenna array based on H-shaped ...
Recent advances in nanofabrication and computational electromagnetic design techniques have enabled ...
Plasmonic metamaterials based on metal-dielectric nanostructures exhibit unique optical properties s...
In this paper, we present numerical and experimental results on optical properties of a multi-resona...
We present computational analysis of nanoantenna arrays for imaging and sensing applications at opti...
Tailoring nanoscale light concentration and electromagnetic near-field enhancement over a broad spec...
This chapter presents a theoretical analysis and experimental study with regard to nanoantennas for ...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...
Nanoantenna arrays with resonances in the mid-infrared spectral range enable a high sensitivity in s...
We report on tuning the plasmonic properties of gold nanoantenna arrays resonant in the infrared (IR...
We report a study of the infrared response by localized surface plasmon resonance (LSPR) modes in go...
Aperture based sensing platforms can be useful for both gas and bio-sensing applications. In this st...
Optical antennas are nanoscale metallic structures which act as effective receivers, transmitters an...
We propose a new design of optical nanoantennas and numerically study their optical properties. The ...