Nonlinear optical processes can be dramatically enhanced <i>via</i> the use of localized surface plasmon modes in metal nanoparticles. Here we show how more elaborate structures, based on shape-controlled Au/Cu<sub>2</sub>O core/shell nanostructures, enable further enhancement of the nanoparticle third-harmonic scattering cross-section. The semiconducting component takes a twofold role in this structure, both providing a knob to tune the resonant frequency of the gold plasmon and providing resonant enhancement by virtue of its excitonic states. The advantages and deficiencies of using such core/shell metal/semiconductor structures are discussed
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The association of plasmonic nanostructures with nonlinear dielectric systems has been shown to prov...
Nonlinear optical processes can be dramatically enhanced <i>via</i> the use of localized surface pla...
High refractive index dielectric nanoantennas are expected to become key elements for nonlinear nano...
We demonstrate the synthesis and characterization of core-shell nanowires consisting of a non-centro...
We incorporate dielectric indium tin oxide nanocrystals into the hot-spot of gold nanogap-antennas a...
Second-harmonic generation (SHG) from centrosymmetric nanostructures originating from the breaking o...
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
We prepare arrays of gold nanoparticles that include both noncentrosymmetric particles with a second...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The association of plasmonic nanostructures with nonlinear dielectric systems has been shown to prov...
Nonlinear optical processes can be dramatically enhanced <i>via</i> the use of localized surface pla...
High refractive index dielectric nanoantennas are expected to become key elements for nonlinear nano...
We demonstrate the synthesis and characterization of core-shell nanowires consisting of a non-centro...
We incorporate dielectric indium tin oxide nanocrystals into the hot-spot of gold nanogap-antennas a...
Second-harmonic generation (SHG) from centrosymmetric nanostructures originating from the breaking o...
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
We prepare arrays of gold nanoparticles that include both noncentrosymmetric particles with a second...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
The association of plasmonic nanostructures with nonlinear dielectric systems has been shown to prov...