Plasmonic dimer nanoantennas are characterized by a strong enhancement of the optical field, leading to large nonlinear effects. The third harmonic emission spectrum thus depends strongly on the antenna shape and size as well as on its gap size. Despite the complex shape of the nanostructure, we find that for a large range of different geometries the nonlinear spectral properties are fully determined by the linear response of the antenna. We find excellent agreement between the measured spectra and predictions from a simple nonlinear oscillator model. We extract the oscillator parameters from the linear spectrum and use the amplitude of the nonlinear perturbation only as scaling parameter of the third harmonic spectra. Deviations from the m...
We investigate the efficiency of second-harmonic generation (SHG) over the transition from capacitiv...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
Plasmonic gold nanoantennas are highly efficient nanoscale nonlinear light converters. The nanoanten...
Femtosecond optical pulses tunable in the near infrared are exploited to drive third harmonic genera...
<p>The plasmon resonance of a metal nanoparticle increases the optical field amplitude in and around...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
We incorporate dielectric indium tin oxide nanocrystals into the hot-spot of gold nanogap-antennas a...
We perform third harmonic spectroscopy of dolmen-type nanostructures, which exhibit plasmonic Fano r...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
International audienceWe investigate the efficiency of second-harmonic generation (SHG) over the tra...
We employ a classical, nonlinear Lorentz-Duffing oscillator model to predict third harmonic conversi...
Nonlinear effects can be enhanced and tailored on a subwavelength scale by taking advantage of high ...
Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much smaller th...
We investigate the efficiency of second-harmonic generation (SHG) over the transition from capacitiv...
We investigate the efficiency of second-harmonic generation (SHG) over the transition from capacitiv...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...
Plasmonic gold nanoantennas are highly efficient nanoscale nonlinear light converters. The nanoanten...
Femtosecond optical pulses tunable in the near infrared are exploited to drive third harmonic genera...
<p>The plasmon resonance of a metal nanoparticle increases the optical field amplitude in and around...
The optimization of nonlinear optical processes on the nanoscale is a crucial step for the integrati...
We incorporate dielectric indium tin oxide nanocrystals into the hot-spot of gold nanogap-antennas a...
We perform third harmonic spectroscopy of dolmen-type nanostructures, which exhibit plasmonic Fano r...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
International audienceWe investigate the efficiency of second-harmonic generation (SHG) over the tra...
We employ a classical, nonlinear Lorentz-Duffing oscillator model to predict third harmonic conversi...
Nonlinear effects can be enhanced and tailored on a subwavelength scale by taking advantage of high ...
Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much smaller th...
We investigate the efficiency of second-harmonic generation (SHG) over the transition from capacitiv...
We investigate the efficiency of second-harmonic generation (SHG) over the transition from capacitiv...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
We demonstrate third harmonic generation in plasmonic antennas consisting of highly doped germanium ...