We demonstrate plasmonic lasing from metal–organic chemical vapor deposition (MOCVD)-grown GaAs–AlGaAs core–shell nanowires (NWs) with subdiffraction limit diameters of ∼150 nm placed directly on a silver thin film. The absence of a low-index dielectric spacer layer between the NW and the metal layer allows for surface plasmon polariton (SPP) lasing using a nonhybridized plasmonic mode. Unlike previously reported plasmonic NW lasers using the fundamental SPP mode, we demonstrate for the first time plasmonic NW lasing under pulsed optical excitation by using the higher order SPP mode. The higher order mode allows us to alleviate the high losses associated with the fundamental plasmonic mode. We observed lasing at temperatures up to 125 K. Ou...
Plasmonic lasers are the plasmonic analog to conventional lasers. They coherently amplify surface pl...
Hybrid plasmonic lasing from zinc doped GaAs nanowires which were coated with a 10 nm thick granul...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...
Nano-scale lasers harnessing metallic plasmons hold promise across physical sciences and industrial ...
Single-mode surface plasmon distributed feedback (DFB) lasers are realized in the near infrared usin...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
We demonstrate lasing in Metal-Insulator-Metal (MIM) waveguides filled with electrically pumped semi...
Plasmonic lasers generate strongly confined electromagnetic fields over a narrow range of wavelength...
Plasmonic lasers generate strongly confined electromagnetic fields over a narrow range of wavelength...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
We will present our latest results on further miniaturization of electrically pumped plasmonic nano-...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
As miniaturized light sources of size beyond the optical diffraction limit, surface plasmon lasers a...
Over the past few decades, semiconductor lasers have relentlessly followed the path towards miniatur...
Plasmonic lasers are the plasmonic analog to conventional lasers. They coherently amplify surface pl...
Hybrid plasmonic lasing from zinc doped GaAs nanowires which were coated with a 10 nm thick granul...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...
Nano-scale lasers harnessing metallic plasmons hold promise across physical sciences and industrial ...
Single-mode surface plasmon distributed feedback (DFB) lasers are realized in the near infrared usin...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
We demonstrate lasing in Metal-Insulator-Metal (MIM) waveguides filled with electrically pumped semi...
Plasmonic lasers generate strongly confined electromagnetic fields over a narrow range of wavelength...
Plasmonic lasers generate strongly confined electromagnetic fields over a narrow range of wavelength...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
We will present our latest results on further miniaturization of electrically pumped plasmonic nano-...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
As miniaturized light sources of size beyond the optical diffraction limit, surface plasmon lasers a...
Over the past few decades, semiconductor lasers have relentlessly followed the path towards miniatur...
Plasmonic lasers are the plasmonic analog to conventional lasers. They coherently amplify surface pl...
Hybrid plasmonic lasing from zinc doped GaAs nanowires which were coated with a 10 nm thick granul...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...