Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much smaller than the wavelength. Only recently, their ability to manipulate photons also on a femtosecond time scale has been harnessed. Nevertheless, designing the dynamical properties of optical antennas has been difficult since the relevant microscopic processes governing their ultrafast response have remained unclear. Here, we exploit frequency-resolved optical gating to directly investigate plasmon response times of different antenna geometries resonant in the near-infrared. Third-harmonic imaging is used in parallel to spatially monitor the plasmonic mode patterns. We find that the few-femtosecond dynamics of these nanodevices is dominated by radiati...
The local enhancement of few-cycle laser pulses by plasmonic nanostructures opens up for spatiotempo...
Plasmonic dimer nanoantennas can significantly boost the electric field strength in the gap region, ...
Second-harmonic generation in plasmonic nanostructures is known to enable the observation of modes w...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
Femtosecond optical pulses tunable in the near infrared are exploited to drive third harmonic genera...
Plasmonic dimer nanoantennas are characterized by a strong enhancement of the optical field, leading...
We propose a broad-band near-infrared trapezoidal plasmonic nanoantenna, analyze it numerically usin...
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...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
We have theoretically demonstrated femtosecond pulse manipulation at the nanoscale using the plasmon...
We study by femtosecond pump−probe microscopy the transient plasmonic response of individual gold na...
We study by femtosecond pump–probe microscopy the transient plasmonic response of individual gold na...
A metal nanoparticle can be considered as consisting of a base of positive ion cores and a sea of fr...
Plasmonic nanoatennas are a versatile tool for coherently manipulating light on a nanoscale by confi...
The local enhancement of few-cycle laser pulses by plasmonic nanostructures opens up for spatiotempo...
Plasmonic dimer nanoantennas can significantly boost the electric field strength in the gap region, ...
Second-harmonic generation in plasmonic nanostructures is known to enable the observation of modes w...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
Femtosecond optical pulses tunable in the near infrared are exploited to drive third harmonic genera...
Plasmonic dimer nanoantennas are characterized by a strong enhancement of the optical field, leading...
We propose a broad-band near-infrared trapezoidal plasmonic nanoantenna, analyze it numerically usin...
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...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
We have theoretically demonstrated femtosecond pulse manipulation at the nanoscale using the plasmon...
We study by femtosecond pump−probe microscopy the transient plasmonic response of individual gold na...
We study by femtosecond pump–probe microscopy the transient plasmonic response of individual gold na...
A metal nanoparticle can be considered as consisting of a base of positive ion cores and a sea of fr...
Plasmonic nanoatennas are a versatile tool for coherently manipulating light on a nanoscale by confi...
The local enhancement of few-cycle laser pulses by plasmonic nanostructures opens up for spatiotempo...
Plasmonic dimer nanoantennas can significantly boost the electric field strength in the gap region, ...
Second-harmonic generation in plasmonic nanostructures is known to enable the observation of modes w...