We report on the design and the numerical and experimental characterization of an all-dielectric reflecting focusing metasurface (metamirror) which does not have a back reflector, but effectively reflects incident waves with the desired reflection phase gradient. The profile of the reflection phase can be tuned independently for both sides of the single-layer subwavelength-thick metamirror by properly selecting dimensions of its dielectric inclusions. Such a feature stems from the bianisotropic omega properties of the inclusions. To demonstrate independent control of the reflection phase, we have designed a metamirror focusing normally incident plane waves at different focal distances being illuminated from the opposite sides. The proposed ...
Lossless, reciprocal bianisotropic metasurfaces have the ability to control the amplitude, phase, an...
Electrically thin composite layers (metasurfaces) can be used to shape transmitted fields. It is usu...
All-dielectric Huygens’ metasurfaces have been widely used in wavefront manipulation through multipo...
We report on the design and the numerical and experimental characterization of an all-dielectric ref...
Conventional mirrors obey Snell’s reflection law: a plane wave is reflected as a plane wave, at the ...
During the past few years, metasurfaces have been used to demonstrate optical elements and systems w...
We introduce dielectric metasurfaces with independent response at different angles of incidence give...
In this work we demonstrate the first design of the focusing reflecting all-dielectric metasurface w...
Emerging gradient metasurfaces represent a new class of diffraction optical components. Through elab...
Implementation of abrupt phase discontinuities along a surface has been the theme of recent research...
By controlling the surface reactance of impenetrable gradient metasurfaces it is possible to shape t...
Metasurfaces, two-dimensional lattices of nanoscale resonators, offer unique opportunities for funct...
Metasurfaces are a novel class of optical devices, made up of an array of subwavelength scatterers t...
Many advances in reflective metasurfaces have been made during the last few years, implementing effi...
The use of the generalized Snell’s law opens wide possibilities for the manipulation of transmitted ...
Lossless, reciprocal bianisotropic metasurfaces have the ability to control the amplitude, phase, an...
Electrically thin composite layers (metasurfaces) can be used to shape transmitted fields. It is usu...
All-dielectric Huygens’ metasurfaces have been widely used in wavefront manipulation through multipo...
We report on the design and the numerical and experimental characterization of an all-dielectric ref...
Conventional mirrors obey Snell’s reflection law: a plane wave is reflected as a plane wave, at the ...
During the past few years, metasurfaces have been used to demonstrate optical elements and systems w...
We introduce dielectric metasurfaces with independent response at different angles of incidence give...
In this work we demonstrate the first design of the focusing reflecting all-dielectric metasurface w...
Emerging gradient metasurfaces represent a new class of diffraction optical components. Through elab...
Implementation of abrupt phase discontinuities along a surface has been the theme of recent research...
By controlling the surface reactance of impenetrable gradient metasurfaces it is possible to shape t...
Metasurfaces, two-dimensional lattices of nanoscale resonators, offer unique opportunities for funct...
Metasurfaces are a novel class of optical devices, made up of an array of subwavelength scatterers t...
Many advances in reflective metasurfaces have been made during the last few years, implementing effi...
The use of the generalized Snell’s law opens wide possibilities for the manipulation of transmitted ...
Lossless, reciprocal bianisotropic metasurfaces have the ability to control the amplitude, phase, an...
Electrically thin composite layers (metasurfaces) can be used to shape transmitted fields. It is usu...
All-dielectric Huygens’ metasurfaces have been widely used in wavefront manipulation through multipo...