Controlling and generating coherent light fields in the nanoscale is critical for reducing the size of photonic circuitry. There are several demonstrations of zero-, one-, two-, and three-dimensional nanolaser architectures. Here we experimentally demonstrate a one-dimensional plasmonic laser, which consists of a periodic chain of aluminum nanoparticles and organic gain media. Lasing is observed at visible wavelengths, with clear thresholds and line widths down to 0.11 nm. Lasing occurs in a dark mode that extends over the whole structure, even outside the pumped area. The single lithography step fabrication and one-dimensional character allow for easy integration of these laser sources with other plasmonic structures.Peer reviewe
The demonstration of plasmon-assisted lasing by associating optical gain media with plasmonic nanost...
| openaire: EC/H2020/745115/EU//OPLDNanoscale coherent light sources offer potentially ultrafast mod...
Metallic structures have opened up many new possibilities for creating nano-lasers, smaller, faster ...
Controlling and generating coherent light fields in the nanoscale is critical for reducing the size ...
We study lasing in regular arrays made from aluminum nanoparticles. We show that these structures fu...
Over the past few decades, semiconductor lasers have relentlessly followed the path towards miniatur...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
ABSTRACT: Plasmonic lasers exploit strong electromagnetic field confinement at dimensions well below...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
Plasmonic nanolasers are a new class of coherent emitters where surface plasmons are amplified by st...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
In recent years, nanolasers based on plasmonic crystal nanocavity structures have attracted signific...
The modeling, fabrication and operation of recently demonstrated lasers employing metallic nano-cavi...
We report on the first demonstration of broadband tunable, single-mode plasmonic nanolasers (spasers...
The demonstration of plasmon-assisted lasing by associating optical gain media with plasmonic nanost...
| openaire: EC/H2020/745115/EU//OPLDNanoscale coherent light sources offer potentially ultrafast mod...
Metallic structures have opened up many new possibilities for creating nano-lasers, smaller, faster ...
Controlling and generating coherent light fields in the nanoscale is critical for reducing the size ...
We study lasing in regular arrays made from aluminum nanoparticles. We show that these structures fu...
Over the past few decades, semiconductor lasers have relentlessly followed the path towards miniatur...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
ABSTRACT: Plasmonic lasers exploit strong electromagnetic field confinement at dimensions well below...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
Plasmonic nanolasers are a new class of coherent emitters where surface plasmons are amplified by st...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
In recent years, nanolasers based on plasmonic crystal nanocavity structures have attracted signific...
The modeling, fabrication and operation of recently demonstrated lasers employing metallic nano-cavi...
We report on the first demonstration of broadband tunable, single-mode plasmonic nanolasers (spasers...
The demonstration of plasmon-assisted lasing by associating optical gain media with plasmonic nanost...
| openaire: EC/H2020/745115/EU//OPLDNanoscale coherent light sources offer potentially ultrafast mod...
Metallic structures have opened up many new possibilities for creating nano-lasers, smaller, faster ...