In recent years, nanolasers based on plasmonic crystal nanocavity structures have attracted significant interest. However, the performance of such lasers is affected significantly by the coupling of the lasing emission to both reflection and transmission sides of the device and to multiple spatial modes in the far field due to higher-order diffraction from plasmonic crystals as well. In this work, we propose a nanolaser design that overcomes the performance degradation of plasmonic crystal based nanolasers and increases the emission intensity significantly. In the proposed nanolaser structure, a nanometer-thick gain medium has a one-dimensional photonic crystal on one side and a metal nanohole array on the other side. An incident pump pulse...
Controlling and generating coherent light fields in the nanoscale is critical for reducing the size ...
Plasmon lasers support cavity structures with sizes below that of the diffraction limit. However, mo...
Two-dimensional photonic crystal lasers have been fabricated on III–V semiconductor slabs. Tuning of...
In recent years, nanolasers based on plasmonic crystal nanocavity structures have attracted signific...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
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...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...
We investigate the effect of manipulating the laser quality factor and the spectral properties of th...
Plasmonic nanolasers are a new class of laser devices which amplify surface plasmons instead of phot...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
Plasmonic nanolasers produce coherent light with wavelengths on a scale similar to their own or larg...
Plasmonic nanolasers are a new class of coherent emitters where surface plasmons are amplified by st...
A high Q-factor of the nanocavity can effectively reduce the threshold of nanolasers. In this paper,...
Controlling and generating coherent light fields in the nanoscale is critical for reducing the size ...
Plasmon lasers support cavity structures with sizes below that of the diffraction limit. However, mo...
Two-dimensional photonic crystal lasers have been fabricated on III–V semiconductor slabs. Tuning of...
In recent years, nanolasers based on plasmonic crystal nanocavity structures have attracted signific...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
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...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...
We investigate the effect of manipulating the laser quality factor and the spectral properties of th...
Plasmonic nanolasers are a new class of laser devices which amplify surface plasmons instead of phot...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
Plasmonic nanolasers produce coherent light with wavelengths on a scale similar to their own or larg...
Plasmonic nanolasers are a new class of coherent emitters where surface plasmons are amplified by st...
A high Q-factor of the nanocavity can effectively reduce the threshold of nanolasers. In this paper,...
Controlling and generating coherent light fields in the nanoscale is critical for reducing the size ...
Plasmon lasers support cavity structures with sizes below that of the diffraction limit. However, mo...
Two-dimensional photonic crystal lasers have been fabricated on III–V semiconductor slabs. Tuning of...