Plasmonic nanoatennas are a versatile tool for coherently manipulating light on a nanoscale by confining electric fields of the driving laser into subwavelength volumes, thereby significantly enhancing electric near fields. It is normally assumed that the time-dependent spectral properties of these near fields are independent of the duration of the driving laser pulse. Here we show that when a few-cycle laser pulse shines on a bow-tie nanoantenna, its spectral properties are dramatically modified, as evidenced by a large shift of the center wavelength of the near field, relative to the driving laser. In addition, for certain geometries, a second color appears in the near field, creating conditions for generation of an isolated attosecond pu...
We have theoretically demonstrated femtosecond pulse manipulation at the nanoscale using the plasmon...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Active plasmonic nanostructures with tunable resonances promise to enable smart materials with multi...
Plasmonic nanoatennas are a versatile tool for coherently manipulating light on a nanoscale by confi...
The temporal response of resonances in nanoplasmonic structures typically converts an incoming few-c...
With the advent of ultrafast optics and controllable waveforms consisting of only a few oscillations...
We present a novel procedure for manipulating the near-field of plasmonic nanoantennas using neural ...
Giant electric-field enhancements localized on nano-antennas are important for the optical near-fiel...
Coherent control is an ingenious tactic to steer a system to a desired optimal state by tailoring th...
Nanoscale coherent light sources offer potentially ultrafast modulation speeds, which could be utili...
Nano-structures excited by light can enhance locally the electric field when tuned to plasmonic reso...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
| openaire: EC/H2020/745115/EU//OPLDNanoscale coherent light sources offer potentially ultrafast mod...
We demonstrate adiabatic nanofocusing of few-cycle light pulses using ultrasharp and ultrasmooth sin...
International audiencePlasmonic dimer nanoantennas can significantly boost the electric field streng...
We have theoretically demonstrated femtosecond pulse manipulation at the nanoscale using the plasmon...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Active plasmonic nanostructures with tunable resonances promise to enable smart materials with multi...
Plasmonic nanoatennas are a versatile tool for coherently manipulating light on a nanoscale by confi...
The temporal response of resonances in nanoplasmonic structures typically converts an incoming few-c...
With the advent of ultrafast optics and controllable waveforms consisting of only a few oscillations...
We present a novel procedure for manipulating the near-field of plasmonic nanoantennas using neural ...
Giant electric-field enhancements localized on nano-antennas are important for the optical near-fiel...
Coherent control is an ingenious tactic to steer a system to a desired optimal state by tailoring th...
Nanoscale coherent light sources offer potentially ultrafast modulation speeds, which could be utili...
Nano-structures excited by light can enhance locally the electric field when tuned to plasmonic reso...
ABSTRACT: Plasmonic nanoantennas are efficient devices to concentrate light in spatial regions much ...
| openaire: EC/H2020/745115/EU//OPLDNanoscale coherent light sources offer potentially ultrafast mod...
We demonstrate adiabatic nanofocusing of few-cycle light pulses using ultrasharp and ultrasmooth sin...
International audiencePlasmonic dimer nanoantennas can significantly boost the electric field streng...
We have theoretically demonstrated femtosecond pulse manipulation at the nanoscale using the plasmon...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Active plasmonic nanostructures with tunable resonances promise to enable smart materials with multi...