Localized plasmon resonance of a metal nanoantenna is determined by its size, shape and environment. Here, we diminish the size dependence by using multilayer metamaterials as epsilon-near-zero (ENZ) substrates. By means of the vanishing index of the substrate, we show that the spectral position of the plasmonic resonance becomes less sensitive to the characteristics of the plasmonic nanostructure and is controlled mostly by the substrate, and hence, it is pinned at a fixed narrow spectral range near the ENZ wavelength. Moreover, this plasmon wavelength can be adjusted by tuning the ENZ region of the substrate, for the same size nanodisk (ND) array. We also show that the difference in the phase of the scattered field by different size NDs a...
Tailoring optical properties of artificial metamaterials, whose optical properties go beyond the lim...
The manipulation of light at the nanoscale has become a fascinating research field called nanophoton...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Localized plasmon resonance of a metal nanoantenna is determined by its size, shape and environment....
The localized surface plasmon resonance (LSPR) is used for light confinement within sub-wavelength s...
Resonances are the cornerstone of photonic applications in many areas of physics and engineering. Th...
Investigation on the interplay of plasmonic resonances in binary nanostructures indicated that, at a...
Nanophotonics is a booming field of research with the promise of chip-scale devices which harness th...
In this work, we performed an extensive theoretical and experimental study to unveil the underlying ...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
Localized surface plasmons are collective electron oscillations in metallic nanostructures at optica...
Epsilon-near-zero (ENZ) media are an emerging platform, embracing the great potential for novel nano...
Fano resonances in plasmonic metasurfaces arise from the interference between a super-radiant and a ...
We examine layered metamaterial structures consisting of alternating films of epsilon-near-zero (ENZ...
Metasurfaces are ultrathin, quasi-two-dimensional materials that are engineered to control and manip...
Tailoring optical properties of artificial metamaterials, whose optical properties go beyond the lim...
The manipulation of light at the nanoscale has become a fascinating research field called nanophoton...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...
Localized plasmon resonance of a metal nanoantenna is determined by its size, shape and environment....
The localized surface plasmon resonance (LSPR) is used for light confinement within sub-wavelength s...
Resonances are the cornerstone of photonic applications in many areas of physics and engineering. Th...
Investigation on the interplay of plasmonic resonances in binary nanostructures indicated that, at a...
Nanophotonics is a booming field of research with the promise of chip-scale devices which harness th...
In this work, we performed an extensive theoretical and experimental study to unveil the underlying ...
Metamaterials are man-made artificial materials of which the optical properties can be engineered to...
Localized surface plasmons are collective electron oscillations in metallic nanostructures at optica...
Epsilon-near-zero (ENZ) media are an emerging platform, embracing the great potential for novel nano...
Fano resonances in plasmonic metasurfaces arise from the interference between a super-radiant and a ...
We examine layered metamaterial structures consisting of alternating films of epsilon-near-zero (ENZ...
Metasurfaces are ultrathin, quasi-two-dimensional materials that are engineered to control and manip...
Tailoring optical properties of artificial metamaterials, whose optical properties go beyond the lim...
The manipulation of light at the nanoscale has become a fascinating research field called nanophoton...
Metamaterials are artificial materials designed to create optical properties that do not exist in na...