Plasmonic metasurfaces provide an effective way to increase the efficiency of several nonlinear processes while maintaining nanoscale dimensions. In this work, nonlinear metasurfaces based on film-coupled silver nanostripes loaded with Kerr nonlinear material are proposed to achieve efficient four-wave mixing (FWM). Highly localized plasmon resonances are formed in the nanogap between the metallic film and nanostripes. The local electric field is dramatically enhanced in this subwavelength nanoregion. These properties combined with the relaxed phase matching condition due to the ultrathin area lead to a giant FWM efficiency, which is enhanced by nineteen orders of magnitude compared to a bare silver screen. In addition, efficient visible an...
We demonstrate how ultra-small dielectric nanoantennas ordered in a metasurface can enable enhanced ...
Three-dimensional (3D) metamaterials show the potential for realizing efficient nonlinear nanoscale ...
Gradient metasurfaces, or ultrathin optical components with engineered transverse impedance gradient...
Nanostructured gratings in a metal surface can highly enhance nonlinear optical processes. The geome...
In this paper, we review and discuss how nanoantennas may be used to largely enhance the nonlinear r...
Since their discovery in the 1960s, nonlinear optical effects have revolutionized optical technologi...
We theoretically study the cascaded four-wave mixing (FWM) in broadband tapered plasmonic nanoantenn...
Nonlinear plasmonics opens up for wavelength conversion, reduced interaction/emission volumes, and n...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Nonlinear optical processes are important in many photonic applications ranging from optical communi...
Nonlinear optical phenomena are paramount in many photonic applications ranging from frequency broad...
Metamaterials exhibit unconventional electromagnetic properties that cannot be found in nature, such...
Dielectric nanoantennas and metasurfaces are able to manipulate light wavefronts with the highest ef...
A nonlinear metasurface structure including a multi-quantum-well layer designed for a nonlinear resp...
Nonlinear processes are important in many fields of photonics ranging from biomedical imaging to ult...
We demonstrate how ultra-small dielectric nanoantennas ordered in a metasurface can enable enhanced ...
Three-dimensional (3D) metamaterials show the potential for realizing efficient nonlinear nanoscale ...
Gradient metasurfaces, or ultrathin optical components with engineered transverse impedance gradient...
Nanostructured gratings in a metal surface can highly enhance nonlinear optical processes. The geome...
In this paper, we review and discuss how nanoantennas may be used to largely enhance the nonlinear r...
Since their discovery in the 1960s, nonlinear optical effects have revolutionized optical technologi...
We theoretically study the cascaded four-wave mixing (FWM) in broadband tapered plasmonic nanoantenn...
Nonlinear plasmonics opens up for wavelength conversion, reduced interaction/emission volumes, and n...
Optical nonlinearity is the change in the optical properties of an arbitrary medium excited by elect...
Nonlinear optical processes are important in many photonic applications ranging from optical communi...
Nonlinear optical phenomena are paramount in many photonic applications ranging from frequency broad...
Metamaterials exhibit unconventional electromagnetic properties that cannot be found in nature, such...
Dielectric nanoantennas and metasurfaces are able to manipulate light wavefronts with the highest ef...
A nonlinear metasurface structure including a multi-quantum-well layer designed for a nonlinear resp...
Nonlinear processes are important in many fields of photonics ranging from biomedical imaging to ult...
We demonstrate how ultra-small dielectric nanoantennas ordered in a metasurface can enable enhanced ...
Three-dimensional (3D) metamaterials show the potential for realizing efficient nonlinear nanoscale ...
Gradient metasurfaces, or ultrathin optical components with engineered transverse impedance gradient...