ABSTRACT: Plasmonic lasers exploit strong electromagnetic field confinement at dimensions well below the diffraction limit. However, lasing from an electromagnetic hot spot supported by discrete, coupled metal nanoparticles (NPs) has not been explicitly demonstrated to date. We present a new design for a room-temperature nanolaser based on three-dimensional (3D) Au bowtie NPs supported by an organic gain material. The extreme field compression, and thus ultrasmall mode volume, within the bowtie gaps produced laser oscillations at the localized plasmon resonance gap mode of the 3D bowties. Transient absorption measurements confirmed ultrafast resonant energy transfer between photoexcited dye molecules and gap plasmons on the picosecond time ...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
ABSTRACT: This paper reports that arrays of three-dimen-sional (3D), bowtie-shaped Au nanoparticle d...
Plasmonic nanolasers are a new class of coherent emitters where surface plasmons are amplified by st...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...
Over the past few decades, semiconductor lasers have relentlessly followed the path towards miniatur...
A spaser consists of a plasmonic noble-metal nanostructure that acts as nanocavity, when incorporate...
In the last few years, due to the great advances in nanotechnology the peculiar properties of the ma...
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...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Nanoscale coherent light sources offer potentially ultrafast modulation speeds, which could be utili...
The confinement of light in cavities that are smaller than the optical diffraction limit can be achi...
Photoresponse of bowtie nanojunctions by Kenneth Mellinger Evans Plasmon resonant nanostructures pro...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
ABSTRACT: This paper reports that arrays of three-dimen-sional (3D), bowtie-shaped Au nanoparticle d...
Plasmonic nanolasers are a new class of coherent emitters where surface plasmons are amplified by st...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...
Over the past few decades, semiconductor lasers have relentlessly followed the path towards miniatur...
A spaser consists of a plasmonic noble-metal nanostructure that acts as nanocavity, when incorporate...
In the last few years, due to the great advances in nanotechnology the peculiar properties of the ma...
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...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Nanoscale coherent light sources offer potentially ultrafast modulation speeds, which could be utili...
The confinement of light in cavities that are smaller than the optical diffraction limit can be achi...
Photoresponse of bowtie nanojunctions by Kenneth Mellinger Evans Plasmon resonant nanostructures pro...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
ABSTRACT: This paper reports that arrays of three-dimen-sional (3D), bowtie-shaped Au nanoparticle d...
Plasmonic nanolasers are a new class of coherent emitters where surface plasmons are amplified by st...