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...
Dynamic control over metamaterial optical properties is key for the use of metamaterials as active e...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
The index of refraction governs the flow of light through materials. At visible and near-infrared wa...
Tunable metasurfaces promise to enable adaptive optical systems with complex functionalities. Among ...
Photonic metamaterials are materials whose optical properties are derived from artificially-structur...
Optical metasurfaces (OMSs) have shown unprecedented capabilities for versatile wavefront manipulati...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
Metamaterials and plasmonics are powerful tools for unconventional manipulation and harnessing of li...
The extensive progress in nanofabrication techniques enabled innovative methods for molding light at...
Nanostructured metal–insulator–metal (MIM) metasurfaces supporting gap-plasmons (GPs) show great pro...
dissertationPlasmonic metasurfaces offer a unique capability to manipulate amplitude, phase and/or p...
Artificial photonic materials, nanofabricated through wavelength-scale engineering, have shown astou...
Artificial photonic materials, nanofabricated through wavelength-scale engineering, have shown astou...
Dynamic polarization control is crucial for emerging highly integrated photonic systems with diverse...
Metamaterials are composed of nanostructures, called artificial atoms, which can give metamaterials ...
Dynamic control over metamaterial optical properties is key for the use of metamaterials as active e...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
The index of refraction governs the flow of light through materials. At visible and near-infrared wa...
Tunable metasurfaces promise to enable adaptive optical systems with complex functionalities. Among ...
Photonic metamaterials are materials whose optical properties are derived from artificially-structur...
Optical metasurfaces (OMSs) have shown unprecedented capabilities for versatile wavefront manipulati...
The ability to control electromagnetic wavefront is a central key in optics. Conventional optical co...
Metamaterials and plasmonics are powerful tools for unconventional manipulation and harnessing of li...
The extensive progress in nanofabrication techniques enabled innovative methods for molding light at...
Nanostructured metal–insulator–metal (MIM) metasurfaces supporting gap-plasmons (GPs) show great pro...
dissertationPlasmonic metasurfaces offer a unique capability to manipulate amplitude, phase and/or p...
Artificial photonic materials, nanofabricated through wavelength-scale engineering, have shown astou...
Artificial photonic materials, nanofabricated through wavelength-scale engineering, have shown astou...
Dynamic polarization control is crucial for emerging highly integrated photonic systems with diverse...
Metamaterials are composed of nanostructures, called artificial atoms, which can give metamaterials ...
Dynamic control over metamaterial optical properties is key for the use of metamaterials as active e...
Optical metasurfaces are thin-layer subwavelength-patterned structures that interact strongly with l...
The index of refraction governs the flow of light through materials. At visible and near-infrared wa...