Tunable metasurfaces promise to enable adaptive optical systems with complex functionalities. Among possible realizations, a recent platform combining microelectromechanical systems (MEMS) with gap-surface plasmon (GSP) metasurfaces offers high modulation efficiency, broadband operation, and fast response. We compare tunable metasurfaces operating in GSP and Fabry–Pérot (FP) regions by investigating polarization-independent blazed gratings both numerically and experimentally. Peak efficiency is calculated to be ∼75% in both cases (∼40% in measurements), while the operation bandwidth is found larger when operating in the GSP region. Advantages of operating in the FP region include relaxed assembly requirements and operation tolerances. Addit...
Optical metasurfaces are judicously engineered electromagnetic interfaces that can control and manip...
Tunable metamaterials belonging to the class of different reconfigurable optical devices have proved...
International audienceMetamaterials are artificial materials made of subwavelength elementary cells ...
Tunable metasurfaces promise to enable adaptive optical systems with complex functionalities. Among ...
Optical metasurfaces (OMSs) have shown unprecedented capabilities for versatile wavefront manipulati...
Photonic metamaterials are materials whose optical properties are derived from artificially-structur...
Nanostructured metal–insulator–metal (MIM) metasurfaces supporting gap-plasmons (GPs) show great pro...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
In the field of nanophotonics, metasurfaces have come to the forefront in real-world applications, o...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
Plasmonic metasurfaces, which can be considered as the two-dimensional analog of metal-based metamat...
The engineering of self-organized plasmonic metasurfaces is demonstrated using a maskless technique ...
The ideals of reconfigurable metasurfaces would be operation in a broad frequency range with a high ...
Metasurfaces which emerged as two-dimensional counterparts of metamaterials, facilitate the realizat...
dissertationPlasmonic metasurfaces offer a unique capability to manipulate amplitude, phase and/or p...
Optical metasurfaces are judicously engineered electromagnetic interfaces that can control and manip...
Tunable metamaterials belonging to the class of different reconfigurable optical devices have proved...
International audienceMetamaterials are artificial materials made of subwavelength elementary cells ...
Tunable metasurfaces promise to enable adaptive optical systems with complex functionalities. Among ...
Optical metasurfaces (OMSs) have shown unprecedented capabilities for versatile wavefront manipulati...
Photonic metamaterials are materials whose optical properties are derived from artificially-structur...
Nanostructured metal–insulator–metal (MIM) metasurfaces supporting gap-plasmons (GPs) show great pro...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
In the field of nanophotonics, metasurfaces have come to the forefront in real-world applications, o...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
Plasmonic metasurfaces, which can be considered as the two-dimensional analog of metal-based metamat...
The engineering of self-organized plasmonic metasurfaces is demonstrated using a maskless technique ...
The ideals of reconfigurable metasurfaces would be operation in a broad frequency range with a high ...
Metasurfaces which emerged as two-dimensional counterparts of metamaterials, facilitate the realizat...
dissertationPlasmonic metasurfaces offer a unique capability to manipulate amplitude, phase and/or p...
Optical metasurfaces are judicously engineered electromagnetic interfaces that can control and manip...
Tunable metamaterials belonging to the class of different reconfigurable optical devices have proved...
International audienceMetamaterials are artificial materials made of subwavelength elementary cells ...