Recent advances in nanofabrication and computational electromagnetic design techniques have enabled the realization of metallic nanostructures in different shapes and sizes with adjustable resonance frequencies. To date, many metamaterial designs in various geometries with the used of different materials have been presented for the applications of surface plasmons, cloaking, biosensing, and frequency selective surfaces(1-5). Surface plasmons which are collective electron oscillations on metal surfaces ensure that plasmonic nanoantennas can be used in many applications like biosensing at infrared (IR) and visible regions. The nanostructure that we introduce has a unit cell that consists of Jerusalem cross-shaped nanoaperture on a gold layer,...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
Gold nanoantennas have been used in a variety of biomedical applications due to their attractive ele...
The possibility to limit and manipulate photons at nanometer scales attracted a lot of interest for ...
Recent advances in nanofabrication and computational electromagnetic design techniques have enabled ...
In this paper, we present numerical and experimental results on optical properties of a multi-resona...
In this paper, we present numerical and experimental results on optical properties of a multi-resona...
In this paper, we present numerical and experimental results on optical properties of a multi-resona...
In this study, we present the optical properties of a plasmonic nanoantenna array based on H-shaped ...
In this study, we present the optical properties of a plasmonic nanoantenna array based on H-shaped ...
In this study, we present the optical properties of a plasmonic nanoantenna array based on H-shaped ...
We present computational analysis of nanoantenna arrays for imaging and sensing applications at opti...
Gold nanoantennas have been used in a variety of biomedical applications due to their attractive ele...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
Gold nanoantennas have been used in a variety of biomedical applications due to their attractive ele...
The possibility to limit and manipulate photons at nanometer scales attracted a lot of interest for ...
Recent advances in nanofabrication and computational electromagnetic design techniques have enabled ...
In this paper, we present numerical and experimental results on optical properties of a multi-resona...
In this paper, we present numerical and experimental results on optical properties of a multi-resona...
In this paper, we present numerical and experimental results on optical properties of a multi-resona...
In this study, we present the optical properties of a plasmonic nanoantenna array based on H-shaped ...
In this study, we present the optical properties of a plasmonic nanoantenna array based on H-shaped ...
In this study, we present the optical properties of a plasmonic nanoantenna array based on H-shaped ...
We present computational analysis of nanoantenna arrays for imaging and sensing applications at opti...
Gold nanoantennas have been used in a variety of biomedical applications due to their attractive ele...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
Gold nanoantennas have been used in a variety of biomedical applications due to their attractive ele...
The possibility to limit and manipulate photons at nanometer scales attracted a lot of interest for ...