The pursuit of miniaturized optical sources for on-chip applications has led to the development of surface plasmon polariton lasers (plasmonic lasers). While applications in spectroscopy and information technology would greatly benefit from the facile and active tuning of the output wavelength from such devices, this topic remains underexplored. Here, we demonstrate optically controlled switching between predefined wavelengths within a plasmonic microlaser. After fabricating Fabry-Pérot plasmonic cavities that consist of two curved block reflectors on an ultrasmooth flat Ag surface, we deposit a thin film of CdSe/CdxZn1-xS/ZnS colloidal core/shell/shell nanoplatelets (NPLs) as the gain medium. Our cavity geometry allows the spatial and ener...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
International audienceWe aim at controlling the spatial distribution of nonlinear photoluminescence ...
We demonstrate a surface plasmon-polariton (SPP) waveguide all-optical switch that combines the uniq...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...
Plasmonic modes in optical cavities can be amplified through stimulated emission. Using this effect,...
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...
We report on reversible all-optical emission control and lasing in plasmonic nanoparticle lattices. ...
We report on reversible all-optical emission control and lasing in plasmonic nanoparticle lattices. ...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
Plasmonics provides an unparalleled method for manipulating light beyond the diffraction limit, maki...
As miniaturized light sources of size beyond the optical diffraction limit, surface plasmon lasers a...
The field of plasmonics1 offers a route to control light fields with metallic nanostructures through...
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...
International audienceWe aim at controlling the spatial distribution of nonlinear photoluminescence ...
We demonstrate a surface plasmon-polariton (SPP) waveguide all-optical switch that combines the uniq...
The pursuit of miniaturized optical sources for on-chip applications has led to the development of s...
Plasmonic modes in optical cavities can be amplified through stimulated emission. Using this effect,...
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...
We report on reversible all-optical emission control and lasing in plasmonic nanoparticle lattices. ...
We report on reversible all-optical emission control and lasing in plasmonic nanoparticle lattices. ...
A nanolaser is a key component for on-chip optical communications and computing systems. Here, we re...
Plasmonics provides an unparalleled method for manipulating light beyond the diffraction limit, maki...
As miniaturized light sources of size beyond the optical diffraction limit, surface plasmon lasers a...
The field of plasmonics1 offers a route to control light fields with metallic nanostructures through...
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...
International audienceWe aim at controlling the spatial distribution of nonlinear photoluminescence ...
We demonstrate a surface plasmon-polariton (SPP) waveguide all-optical switch that combines the uniq...