By combining the freedom of both the structural design and the orientation of split ring resonator antennas, we demonstrate terahertz metasurfaces that are capable of controlling both the phase and amplitude profiles over a very broad bandwidth. As an example, we show that the phase-amplitude metasurfaces can be engineered to control the diffraction orders arbitrarily
Metasurfaces have demonstrated numerous functions, including guided scattering and localization of e...
Metasurfaces are two-dimensional arrays of closely-spaced, subwavelength scatterers. These surfaces ...
We demonstrate terahertz chiral metamaterials that achieve resonant transmission and strong optical ...
Metasurfaces have attracted large interest in recent years due to their relatively simple fabricatio...
Metasurfaces have attracted large interest in recent years due to their relatively simple fabricatio...
Tunable metasurfaces are of great potential for the next-generation electromagnetic systems (e.g. be...
Recently, reflectionless or low-reflection surfaces made of subwavelength structures have been of br...
International audienceRecently, a huge interest has been raised in controlling and manipulating elec...
Metasurfaces allow for advanced manipulation of optical signals by imposing phase discontinuities ac...
The research and development of multifunctional metasurfaces has attracted much attention, and manip...
Controlling spin electromagnetic waves by ultra-thin Pancharatnam-Berry (PB) metasurfaces show promi...
| openaire: EC/H2020/736876/EU//VISORSURFMetasurfaces (MSs) have been utilized to manipulate differe...
Metasurfaces impart phase discontinuities on impinging electromagnetic waves that are typically limi...
International audienceRecently, a huge interest has been raised in controlling and manipulating elec...
International audienceUltrafast reconfigurable devices with high-speed responses, high-resolution ca...
Metasurfaces have demonstrated numerous functions, including guided scattering and localization of e...
Metasurfaces are two-dimensional arrays of closely-spaced, subwavelength scatterers. These surfaces ...
We demonstrate terahertz chiral metamaterials that achieve resonant transmission and strong optical ...
Metasurfaces have attracted large interest in recent years due to their relatively simple fabricatio...
Metasurfaces have attracted large interest in recent years due to their relatively simple fabricatio...
Tunable metasurfaces are of great potential for the next-generation electromagnetic systems (e.g. be...
Recently, reflectionless or low-reflection surfaces made of subwavelength structures have been of br...
International audienceRecently, a huge interest has been raised in controlling and manipulating elec...
Metasurfaces allow for advanced manipulation of optical signals by imposing phase discontinuities ac...
The research and development of multifunctional metasurfaces has attracted much attention, and manip...
Controlling spin electromagnetic waves by ultra-thin Pancharatnam-Berry (PB) metasurfaces show promi...
| openaire: EC/H2020/736876/EU//VISORSURFMetasurfaces (MSs) have been utilized to manipulate differe...
Metasurfaces impart phase discontinuities on impinging electromagnetic waves that are typically limi...
International audienceRecently, a huge interest has been raised in controlling and manipulating elec...
International audienceUltrafast reconfigurable devices with high-speed responses, high-resolution ca...
Metasurfaces have demonstrated numerous functions, including guided scattering and localization of e...
Metasurfaces are two-dimensional arrays of closely-spaced, subwavelength scatterers. These surfaces ...
We demonstrate terahertz chiral metamaterials that achieve resonant transmission and strong optical ...