Metamaterials and, more recently, metasurfaces have been the focus of extensive research activities, as they play an ever-increasing role in the design of integrated photonics platform. Stacked metasurfaces are also currently investigated as an alternative route to design devices with enhanced optical properties or to propose exotic effects that cannot be achieved in single-layered metasurfaces. In this study, we theoretically show and experimentally demonstrate that stacked Metallic Wire-Grid Metasurfaces (MWGMs) can exhibit polarisation-induced Fano resonances owing to the basic polarisation properties of MWGM. We first present an original model based on an extended Jones formalism together with a circulating field approach, which reveals...
Radiative losses are crucial in optimizing the performance of metamaterial-based devices across the ...
Abstract We propose a planar metamaterial formed by four-strip metallic resonators, which can achiev...
Surrounded by tons of electromagnetic devices, understanding wave-matter interaction plays a pivotal...
International audienceStacked metasurfaces are being investigated in light of exploring exotic optic...
Stacked metasurfaces are being investigated in light of exploring exotic optical effects that cannot...
Magnetic Fano resonances in there-dimensional symmetry broken meta-foils at THz frequencies are theo...
We demonstrate theoretically and experimentally that Fano resonances can be obtained in terahertz me...
© 2016, Springer-Verlag Berlin Heidelberg.We introduce a comprehensive approach to the design of mir...
This PhD thesis deals with the theoretical study of stacked metallic metamaterials. Such structures ...
Metamaterials has transformed our perception of artificial materials being simply just man-made mate...
Fano resonances in metamaterials are known for their high quality (Q) factor and high sensitivity to...
The engineering of metal-insulator-metal metasurfaces (MSs) displaying sharp spectral features based...
Fano resonances in metasurfaces are important due to their low loss subradiant behavior that allows ...
We show that the terahertz resonant transmission through metal hole array can be tailored by filling...
Abstract—A new planar engineered material structure, which has multiple Fano resonances at the terah...
Radiative losses are crucial in optimizing the performance of metamaterial-based devices across the ...
Abstract We propose a planar metamaterial formed by four-strip metallic resonators, which can achiev...
Surrounded by tons of electromagnetic devices, understanding wave-matter interaction plays a pivotal...
International audienceStacked metasurfaces are being investigated in light of exploring exotic optic...
Stacked metasurfaces are being investigated in light of exploring exotic optical effects that cannot...
Magnetic Fano resonances in there-dimensional symmetry broken meta-foils at THz frequencies are theo...
We demonstrate theoretically and experimentally that Fano resonances can be obtained in terahertz me...
© 2016, Springer-Verlag Berlin Heidelberg.We introduce a comprehensive approach to the design of mir...
This PhD thesis deals with the theoretical study of stacked metallic metamaterials. Such structures ...
Metamaterials has transformed our perception of artificial materials being simply just man-made mate...
Fano resonances in metamaterials are known for their high quality (Q) factor and high sensitivity to...
The engineering of metal-insulator-metal metasurfaces (MSs) displaying sharp spectral features based...
Fano resonances in metasurfaces are important due to their low loss subradiant behavior that allows ...
We show that the terahertz resonant transmission through metal hole array can be tailored by filling...
Abstract—A new planar engineered material structure, which has multiple Fano resonances at the terah...
Radiative losses are crucial in optimizing the performance of metamaterial-based devices across the ...
Abstract We propose a planar metamaterial formed by four-strip metallic resonators, which can achiev...
Surrounded by tons of electromagnetic devices, understanding wave-matter interaction plays a pivotal...