Nanoscale coherent light sources offer potentially ultrafast modulation speeds, which could be utilized for novel sensors and optical switches. Plasmonic periodic structures combined with organic gain materials have emerged as promising candidates for such nanolasers. Their plasmonic component provides high intensity and ultrafast nanoscale-confined electric fields, while organic gain materials offer fabrication flexibility and a low acquisition cost. Despite reports on lasing in plasmonic arrays, lasing dynamics in these structures have not been experimentally studied yet. Here we demonstrate, for the first time, an organic dye nanoparticle-array laser with more than a 100 GHz modulation bandwidth. We show that the lasing modulation speed ...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Periodic arrays of air nanoholes in thin metal films that support surface plasmon resonances can pro...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...
| openaire: EC/H2020/745115/EU//OPLDNanoscale coherent light sources offer potentially ultrafast mod...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
In the last few years, due to the great advances in nanotechnology the peculiar properties of the ma...
ABSTRACT: Plasmonic lasers exploit strong electromagnetic field confinement at dimensions well below...
We report on reversible all-optical emission control and lasing in plasmonic nanoparticle lattices. ...
We report on reversible all-optical emission control and lasing in plasmonic nanoparticle lattices. ...
Plasmonic nanoatennas are a versatile tool for coherently manipulating light on a nanoscale by confi...
Organic dye molecules offer significant potential as gain media in the emerging field of optical amp...
We demonstrate plasmonically nano-engineered coherent random lasing and stimulated emission enhancem...
Metallic nanostructures provide a toolkit for the generation of coherent light below the diffraction...
Controlling and generating coherent light fields in the nanoscale is critical for reducing the size ...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Periodic arrays of air nanoholes in thin metal films that support surface plasmon resonances can pro...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...
| openaire: EC/H2020/745115/EU//OPLDNanoscale coherent light sources offer potentially ultrafast mod...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
In the last few years, due to the great advances in nanotechnology the peculiar properties of the ma...
ABSTRACT: Plasmonic lasers exploit strong electromagnetic field confinement at dimensions well below...
We report on reversible all-optical emission control and lasing in plasmonic nanoparticle lattices. ...
We report on reversible all-optical emission control and lasing in plasmonic nanoparticle lattices. ...
Plasmonic nanoatennas are a versatile tool for coherently manipulating light on a nanoscale by confi...
Organic dye molecules offer significant potential as gain media in the emerging field of optical amp...
We demonstrate plasmonically nano-engineered coherent random lasing and stimulated emission enhancem...
Metallic nanostructures provide a toolkit for the generation of coherent light below the diffraction...
Controlling and generating coherent light fields in the nanoscale is critical for reducing the size ...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
We present a review on the advances of pulse control and ultrafast coherent excitation of both plasm...
Periodic arrays of air nanoholes in thin metal films that support surface plasmon resonances can pro...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...