We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional metamaterials consisting of stacked metasurfaces. To achieve phase matching, we utilize a novel mechanism based on phase engineering of the metasurfaces at the interacting wavelengths, facilitating phase-matched SHG in the unconventional backward direction. Stacking up to five metasurfaces,we obtain a phase-matched SHG signal, which scales superlinearly with the number of layers. Our results motivate further investigations to achieve higher conversion efficiencies also with more complex wave fronts.11Nsciescopu
Nonlinear metasurfaces based on coupling locally-enhanced plasmonic response to intersubband transit...
We present our recent progress in developing nonlinear metasurfaces for Second- and Third-harmonic g...
Metasurfaces have recently gained extensive interest because of their extraordinary optical behavior...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional metamaterials c...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional meta-materials ...
We demonstrate a simple and scalable approach to increase conversion efficiencies of nonlinear metas...
Metamaterials exhibit unconventional electromagnetic properties that cannot be found in nature, such...
Three-dimensional (3D) metamaterials show the potential for realizing efficient nonlinear nanoscale ...
Backward phase matching, which describes counterpropagating fundamental and harmonic waves in a nega...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
Nonlinear responses in metasurfaces have shown great promise for various applications, such as nonli...
Nanostructured surfaces, which drastically manipulate light on a very small spatial scale were inves...
We show that a deliberately engineered dispersive metamaterial slab can enable the coexistence and p...
Gradient metasurfaces, or ultrathin optical components with engineered transverse impedance gradient...
Nonlinear metasurfaces based on coupling locally-enhanced plasmonic response to intersubband transit...
We present our recent progress in developing nonlinear metasurfaces for Second- and Third-harmonic g...
Metasurfaces have recently gained extensive interest because of their extraordinary optical behavior...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional metamaterials c...
We demonstrate phase-matched second-harmonic generation (SHG) from three-dimensional meta-materials ...
We demonstrate a simple and scalable approach to increase conversion efficiencies of nonlinear metas...
Metamaterials exhibit unconventional electromagnetic properties that cannot be found in nature, such...
Three-dimensional (3D) metamaterials show the potential for realizing efficient nonlinear nanoscale ...
Backward phase matching, which describes counterpropagating fundamental and harmonic waves in a nega...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
We study the second-harmonic generation in left-handed metamaterials with a quadratic nonlinear resp...
Nonlinear responses in metasurfaces have shown great promise for various applications, such as nonli...
Nanostructured surfaces, which drastically manipulate light on a very small spatial scale were inves...
We show that a deliberately engineered dispersive metamaterial slab can enable the coexistence and p...
Gradient metasurfaces, or ultrathin optical components with engineered transverse impedance gradient...
Nonlinear metasurfaces based on coupling locally-enhanced plasmonic response to intersubband transit...
We present our recent progress in developing nonlinear metasurfaces for Second- and Third-harmonic g...
Metasurfaces have recently gained extensive interest because of their extraordinary optical behavior...