Metallic and plasmonic nanolasers have attracted growing interest recently. Plasmonic lasers demonstrated so far operate in hybrid photon-plasmon modes in transverse dimensions, rendering it impossible to separate photonic from plasmonic components. Thus only the far-field photonic component can be measured and utilized directly. But spatially separated plasmon modes are highly desired for applications including high-efficiency coupling of single-photon emitters and ultrasensitivity optical sensing. Here, we report a nanowire (NW) laser that offers subdiffraction-limited beam size and spatially separated plasmon cavity modes. By near-field coupling a high-gain CdSe NW and a 100 nm diameter Ag NW, we demonstrate a hybrid photon-plasmon laser...
Semiconductor nanolasers represent the current frontier of research in the confluencing area of nano...
A high Q-factor of the nanocavity can effectively reduce the threshold of nanolasers. In this paper,...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
We report a plasmonic laser device exhibiting strong sub-wavelength confinement. These nanowire-base...
a b s t r a c t Novel plasmonic nanolaser structures are proposed by leveraging the efficient guidin...
Next-generation optoelectronic devices and photonic circuitry will have to incorporate on-chip compa...
Hybrid plasmonic lasers provide deep subwavelength optical confinement, strongly enhanced light–matt...
Semiconductor nanowires (NW) hold great promise for micro/nanolasers owing to their naturally formed...
Over the past few decades, semiconductor lasers have relentlessly followed the path towards miniatur...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Abstract—In this paper, we investigate the effect of cladding lay-ers on a hybrid plasmonic nanowire...
ABSTRACT: With unprecedented ability to localize electro-magnetic field in time and space, the nanom...
Semiconductor nanolasers represent the current frontier of research in the confluencing area of nano...
A high Q-factor of the nanocavity can effectively reduce the threshold of nanolasers. In this paper,...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
We report a plasmonic laser device exhibiting strong sub-wavelength confinement. These nanowire-base...
a b s t r a c t Novel plasmonic nanolaser structures are proposed by leveraging the efficient guidin...
Next-generation optoelectronic devices and photonic circuitry will have to incorporate on-chip compa...
Hybrid plasmonic lasers provide deep subwavelength optical confinement, strongly enhanced light–matt...
Semiconductor nanowires (NW) hold great promise for micro/nanolasers owing to their naturally formed...
Over the past few decades, semiconductor lasers have relentlessly followed the path towards miniatur...
Plasmonics offers a unique opportunity to break the diffraction limit of light and bring photonic de...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Abstract—In this paper, we investigate the effect of cladding lay-ers on a hybrid plasmonic nanowire...
ABSTRACT: With unprecedented ability to localize electro-magnetic field in time and space, the nanom...
Semiconductor nanolasers represent the current frontier of research in the confluencing area of nano...
A high Q-factor of the nanocavity can effectively reduce the threshold of nanolasers. In this paper,...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...