Plasmonic modes in optical cavities can be amplified through stimulated emission. Using this effect, plasmonic lasers can potentially provide chip-integrated sources of coherent surface plasmon polaritons (SPPs). However, while plasmonic lasers have been experimentally demonstrated, they have not generated propagating plasmons as their primary output signal. Instead, plasmonic lasers typically involve significant emission of free-space photons that are intentionally outcoupled from the cavity by Bragg diffraction or that leak from reflector edges due to uncontrolled scattering. Here, we report a simple cavity design that allows for straightforward extraction of the lasing mode as SPPs while minimizing photon leakage. We achieve plasmonic la...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
Abstract-We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exp...
Since its invention in 1960, the laser has seen tremendous developments and has quickly revolutioniz...
Plasmonic modes in optical cavities can be amplified through stimulated emission. Using this effect,...
The coupling between photons and lattice plasmons in metallic nanostructure arrays makes them good c...
Plasmonic lasers generate strongly confined electromagnetic fields over a narrow range of wavelength...
Single-mode surface plasmon distributed feedback (DFB) lasers are realized in the near infrared usin...
Plasmonic lasers generate strongly confined electromagnetic fields over a narrow range of wavelength...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...
Nano-scale lasers harnessing metallic plasmons hold promise across physical sciences and industrial ...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...
As miniaturized light sources of size beyond the optical diffraction limit, surface plasmon lasers a...
Surface plasmons (SPs) are surface waves at the interface between a dielectric and a good metal, a...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
Abstract-We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exp...
Since its invention in 1960, the laser has seen tremendous developments and has quickly revolutioniz...
Plasmonic modes in optical cavities can be amplified through stimulated emission. Using this effect,...
The coupling between photons and lattice plasmons in metallic nanostructure arrays makes them good c...
Plasmonic lasers generate strongly confined electromagnetic fields over a narrow range of wavelength...
Single-mode surface plasmon distributed feedback (DFB) lasers are realized in the near infrared usin...
Plasmonic lasers generate strongly confined electromagnetic fields over a narrow range of wavelength...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...
Nano-scale lasers harnessing metallic plasmons hold promise across physical sciences and industrial ...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...
As miniaturized light sources of size beyond the optical diffraction limit, surface plasmon lasers a...
Surface plasmons (SPs) are surface waves at the interface between a dielectric and a good metal, a...
Periodic dielectric structures are typically integrated with a planar waveguide to create photonic b...
Abstract-We show that Bragg gratings can be readily incorporated into metallic nano-lasers which exp...
Since its invention in 1960, the laser has seen tremendous developments and has quickly revolutioniz...