During recent years, advances in the design of arrays of subwavelength optical elements with special electromagnetic properties have enabled quasi two-dimensional structures that control and manipulate electromagnetic phase, amplitude and polarization. Active control of the response of metasurfaces is possible using transparent conducting oxides such as Indium Tin Oxide (ITO) as a tunable active material [1]. Changing the complex permittivity of ITO by applying a voltage yields modulation of reflected wave phase and amplitude. To achieve this, we designed subwavelength antenna arrays consisting of a gold back reflector and gold fishbone antennas. Planar dielectric layers containing a gate tunable layer of ITO are sandwiched between the back...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
The ability to control all the important constitutive properties of light via interaction with nanos...
The ability to control all the important constitutive properties of light via interaction with nanos...
Metasurfaces composed of sub-wavelength artificial structures show promise for extraordinary light-m...
Metasurfaces composed of sub-wavelength artificial structures show promise for extraordinary light-m...
In the last several years, metasurfaces have demonstrated promise as both flat optical elements to r...
In the last several years, metasurfaces have demonstrated promise as both flat optical elements to r...
In the last several years, metasurfaces have demonstrated promise as both flat optical elements to r...
Metasurfaces composed of planar arrays of subwavelength artificial structures show promise for extra...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
In the last decades, plasmonic resonant nanoantennas have created interest in a wide range of resear...
Metasurfaces composed of planar arrays of subwavelength artificial structures show promise for extra...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
The ability to control all the important constitutive properties of light via interaction with nanos...
The ability to control all the important constitutive properties of light via interaction with nanos...
Metasurfaces composed of sub-wavelength artificial structures show promise for extraordinary light-m...
Metasurfaces composed of sub-wavelength artificial structures show promise for extraordinary light-m...
In the last several years, metasurfaces have demonstrated promise as both flat optical elements to r...
In the last several years, metasurfaces have demonstrated promise as both flat optical elements to r...
In the last several years, metasurfaces have demonstrated promise as both flat optical elements to r...
Metasurfaces composed of planar arrays of subwavelength artificial structures show promise for extra...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
In the last decades, plasmonic resonant nanoantennas have created interest in a wide range of resear...
Metasurfaces composed of planar arrays of subwavelength artificial structures show promise for extra...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
We propose an electrically tunable metasurface, which can achieve relatively large phase modulation ...
The ability to control all the important constitutive properties of light via interaction with nanos...
The ability to control all the important constitutive properties of light via interaction with nanos...