Efficient frequency conversion techniques are crucial to the development of plasmonic metasurfaces for information processing and signal modulation. In principle, nanoscale electric-field confinement in nonlinear materials enables higher harmonic conversion efficiencies per unit volume than those attainable in bulk materials. Here we demonstrate efficient second-harmonic generation (SHG) in a serrated nanogap plasmonic geometry that generates steep electric field gradients on a dielectric metasurface. An ultrafast control pulse is used to control plasmon-induced electric fields in a thin-film material with inversion symmetry that, without plasmonic enhancement, does not exhibit an even-order nonlinear optical response. The temporal evolutio...
Strong field enhancement and confinement in plasmonic nanostructures provide suitable conditions for...
A metal film with a thickness that reflects essentially all incident light, can be made highly trans...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Plasmonic structures can precisely localize electromagnetic energy to deep subwavelength regions res...
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
Since their discovery in the 1960s, nonlinear optical effects have revolutionized optical technologi...
All-optical control of surface plasmon polaritons (SPPs) is theoretically demonstrated in arrays of ...
We report highly-nonlinear ultra-thin metasurfaces based on coupling of modes in plasmonic nanoreson...
We propose and experimentally demonstrate a new plasmonic nonlinear light generation (NLG) structure...
Gradient metasurfaces, or ultrathin optical components with engineered transverse impedance gradient...
Intersubband transitions in n-doped multi-quantum-well semiconductor heterostructures make it possib...
We design and fabricate a metasurface composed of gold cut-disk resonators that exhibits a strong c...
Second harmonic generation (SHG) is forbidden for centrosymmetric materials such metals. Yet, symmet...
Active electric control of highly efficient third harmonic generation was realized in an ultrathin n...
Efficient frequency up-conversion of coherent light at the nanoscale is highly demanded for a variet...
Strong field enhancement and confinement in plasmonic nanostructures provide suitable conditions for...
A metal film with a thickness that reflects essentially all incident light, can be made highly trans...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...
Plasmonic structures can precisely localize electromagnetic energy to deep subwavelength regions res...
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
Since their discovery in the 1960s, nonlinear optical effects have revolutionized optical technologi...
All-optical control of surface plasmon polaritons (SPPs) is theoretically demonstrated in arrays of ...
We report highly-nonlinear ultra-thin metasurfaces based on coupling of modes in plasmonic nanoreson...
We propose and experimentally demonstrate a new plasmonic nonlinear light generation (NLG) structure...
Gradient metasurfaces, or ultrathin optical components with engineered transverse impedance gradient...
Intersubband transitions in n-doped multi-quantum-well semiconductor heterostructures make it possib...
We design and fabricate a metasurface composed of gold cut-disk resonators that exhibits a strong c...
Second harmonic generation (SHG) is forbidden for centrosymmetric materials such metals. Yet, symmet...
Active electric control of highly efficient third harmonic generation was realized in an ultrathin n...
Efficient frequency up-conversion of coherent light at the nanoscale is highly demanded for a variet...
Strong field enhancement and confinement in plasmonic nanostructures provide suitable conditions for...
A metal film with a thickness that reflects essentially all incident light, can be made highly trans...
Nonlinear frequency generation at the nanoscale is a hot research topic which is gaining increasing ...