We theoretically study the cascaded four-wave mixing (FWM) in broadband tapered plasmonic nanoantennas. In comparison with nonlinear bulk medium they demonstrate a 300-fold increase in nonlinear frequency conversion detected in the main lobe of the nanoantenna far-field pattern. This is achieved by tuning the elements of the nanoantenna to resonance frequencies involved in the FWM interaction. Our findings have a potentially broad application in ultrafast nonlinear spectroscopy, sensing, on-chip optical frequency conversion, nonlinear optical metamaterials, and photon sources.This work was supported by the Australian Research Council
The current work investigates the four-wave mixing (FWM) signal from gold nanorods (NRs) using two s...
Plasmonic gold nanoantennas are highly efficient nanoscale nonlinear light converters. The nanoanten...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
We study theoretically the cascaded four-wave mixing (FWM) in broadband tapered plasmonic nanoantenn...
Plasmonic metasurfaces provide an effective way to increase the efficiency of several nonlinear proc...
In this paper, we review and discuss how nanoantennas may be used to largely enhance the nonlinear r...
Nonlinear plasmonics opens up for wavelength conversion, reduced interaction/emission volumes, and n...
Nanostructured gratings in a metal surface can highly enhance nonlinear optical processes. The geome...
A design for a subwavelength all-optical frequency mixer is proposed. The method relies on enhanced ...
We demonstrate how ultra-small dielectric nanoantennas ordered in a metasurface can enable enhanced ...
Nonlinear frequency conversion is one of the most fundamental processes in nonlinear optics. It has ...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The optical properties of cascaded plasmon resonant metallic nanocomposites are investigated. Plasmo...
Localized plasmons in metallic nanostructures have been widely used to enhance nonlinear optical eff...
The control of nonlinear optical signals in nanostructured systems is pivotal to develop functional ...
The current work investigates the four-wave mixing (FWM) signal from gold nanorods (NRs) using two s...
Plasmonic gold nanoantennas are highly efficient nanoscale nonlinear light converters. The nanoanten...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
We study theoretically the cascaded four-wave mixing (FWM) in broadband tapered plasmonic nanoantenn...
Plasmonic metasurfaces provide an effective way to increase the efficiency of several nonlinear proc...
In this paper, we review and discuss how nanoantennas may be used to largely enhance the nonlinear r...
Nonlinear plasmonics opens up for wavelength conversion, reduced interaction/emission volumes, and n...
Nanostructured gratings in a metal surface can highly enhance nonlinear optical processes. The geome...
A design for a subwavelength all-optical frequency mixer is proposed. The method relies on enhanced ...
We demonstrate how ultra-small dielectric nanoantennas ordered in a metasurface can enable enhanced ...
Nonlinear frequency conversion is one of the most fundamental processes in nonlinear optics. It has ...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The optical properties of cascaded plasmon resonant metallic nanocomposites are investigated. Plasmo...
Localized plasmons in metallic nanostructures have been widely used to enhance nonlinear optical eff...
The control of nonlinear optical signals in nanostructured systems is pivotal to develop functional ...
The current work investigates the four-wave mixing (FWM) signal from gold nanorods (NRs) using two s...
Plasmonic gold nanoantennas are highly efficient nanoscale nonlinear light converters. The nanoanten...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...