We perform third harmonic spectroscopy of dolmen-type nanostructures, which exhibit plasmonic Fano resonances in the near-infrared. Strong third harmonic emission is predominantly radiated close to the low energy peak of the Fano resonance. Furthermore, we find that the third harmonic polarization of the subradiant mode interferes destructively and diminishes the nonlinear signal in the far-field. By comparing the experimental third harmonic spectra with finite element simulations and an anharmonic oscillator model, we find strong indications that the source of the third harmonic is the optical nonlinearity of the bare gold enhanced by the resonant plasmonic polarization
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
We propose to use diabolo nanoantennas for experimentally investigating the origin of the enhanced t...
<p>The plasmon resonance of a metal nanoparticle increases the optical field amplitude in and around...
International audienceEnhancing ultrafast nonlinear processes at a nanometer scale has the potential...
Plasmonic gold nanoantennas are highly efficient nanoscale nonlinear light converters. The nanoanten...
\u3cp\u3eWe numerically investigate the second harmonic generation from different plasmonic systems ...
We incorporate dielectric indium tin oxide nanocrystals into the hot-spot of gold nanogap-antennas a...
Plasmonic dimer nanoantennas are characterized by a strong enhancement of the optical field, leading...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
Significant augmentation of second harmonic generation using Fano resonances in plasmonic heptamers ...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
Second-harmonic generation (SHG) from centrosymmetric nanostructures originating from the breaking o...
Plasmonic structures can precisely localize electromagnetic energy to deep subwavelength regions res...
Fano resonances manifest novel phenomena both in linear and nonlinear response of plasmonic nanomate...
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
We propose to use diabolo nanoantennas for experimentally investigating the origin of the enhanced t...
<p>The plasmon resonance of a metal nanoparticle increases the optical field amplitude in and around...
International audienceEnhancing ultrafast nonlinear processes at a nanometer scale has the potential...
Plasmonic gold nanoantennas are highly efficient nanoscale nonlinear light converters. The nanoanten...
\u3cp\u3eWe numerically investigate the second harmonic generation from different plasmonic systems ...
We incorporate dielectric indium tin oxide nanocrystals into the hot-spot of gold nanogap-antennas a...
Plasmonic dimer nanoantennas are characterized by a strong enhancement of the optical field, leading...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
Significant augmentation of second harmonic generation using Fano resonances in plasmonic heptamers ...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
Second-harmonic generation (SHG) from centrosymmetric nanostructures originating from the breaking o...
Plasmonic structures can precisely localize electromagnetic energy to deep subwavelength regions res...
Fano resonances manifest novel phenomena both in linear and nonlinear response of plasmonic nanomate...
Because of their ability to strongly localize and enhance optical fields, plasmonic nanostructures h...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
We propose to use diabolo nanoantennas for experimentally investigating the origin of the enhanced t...