Single-mode surface plasmon distributed feedback (DFB) lasers are realized in the near infrared using a two-dimensional non-uniform long-range surface plasmon polariton structure. The surface plasmon mode is excited onto a 20 nm-thick, 1 μm-wide metal stripe (Ag or Au) on a silica substrate, where the stripe is stepped in width periodically, forming a 1st order Bragg grating. Optical gain is provided by optically pumping a 450 nm-thick IR-140 doped PMMA layer as the top cladding, which covers the entire length of the Bragg grating, thus creating a DFB laser. Single-mode lasing peaks of very narrow linewidth were observed for Ag and Au DFBs near 882 nm at room temperature. The narrow linewidths are explained by the low spontaneous emission r...
We will present our latest results on further miniaturization of electrically pumped plasmonic nano-...
Surface plasmons (SPs) are surface waves at the interface between a dielectric and a good metal, a...
A design of single-mode distributed feedback quantum cascade lasers (DFB-QCLs) with surface metal gr...
We investigate electrically pumped, distributed feedback (DFB) lasers, based on gap-plasmon mode met...
Plasmonic modes in optical cavities can be amplified through stimulated emission. Using this effect,...
In this paper we present our latest results on the design, fabrication and characterization of metal...
Unlike conventional dielectric photonic structures, metal coated or plasmonic structures can confine...
The coupling between photons and lattice plasmons in metallic nanostructure arrays makes them good c...
Nano-scale lasers harnessing metallic plasmons hold promise across physical sciences and industrial ...
We demonstrate plasmonic lasing from metal–organic chemical vapor deposition (MOCVD)-grown GaAs–AlGa...
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...
Abstract-We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exp...
Surface-plasmon modes confined at the interface between a metal and a semiconductor are exploited in...
Surface plasmons in metal hole arrays have been studied extensively in the context of extraordinary ...
We will present our latest results on further miniaturization of electrically pumped plasmonic nano-...
Surface plasmons (SPs) are surface waves at the interface between a dielectric and a good metal, a...
A design of single-mode distributed feedback quantum cascade lasers (DFB-QCLs) with surface metal gr...
We investigate electrically pumped, distributed feedback (DFB) lasers, based on gap-plasmon mode met...
Plasmonic modes in optical cavities can be amplified through stimulated emission. Using this effect,...
In this paper we present our latest results on the design, fabrication and characterization of metal...
Unlike conventional dielectric photonic structures, metal coated or plasmonic structures can confine...
The coupling between photons and lattice plasmons in metallic nanostructure arrays makes them good c...
Nano-scale lasers harnessing metallic plasmons hold promise across physical sciences and industrial ...
We demonstrate plasmonic lasing from metal–organic chemical vapor deposition (MOCVD)-grown GaAs–AlGa...
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...
Abstract-We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exp...
Surface-plasmon modes confined at the interface between a metal and a semiconductor are exploited in...
Surface plasmons in metal hole arrays have been studied extensively in the context of extraordinary ...
We will present our latest results on further miniaturization of electrically pumped plasmonic nano-...
Surface plasmons (SPs) are surface waves at the interface between a dielectric and a good metal, a...
A design of single-mode distributed feedback quantum cascade lasers (DFB-QCLs) with surface metal gr...