We experimentally determine the lasing mode(s) in optically pumped semiconductor nanowire lasers. The spatially resolved and angle-resolved far-field emission profiles of single InP nanowire lasers lying horizontally on a SiO2 substrate are characterized in a microphotoluminescence (μ-PL) setup. The experimentally obtained polarization dependent far-field profiles match very well with numerical simulations and enable unambiguous identification of the lasing mode(s). This technique can be applied to characterize lasing modes in other type of nanolasers that are integrated on a substrate in either vertical or horizontal configurations
Semiconductor nanowire (NW) lasers have attracted considerable research effort given their excellent...
In recent years there has been a tremendous interest in nanoscale optoelectronic devices. Among the...
We experimentally demonstrate the directional emission of polarized light from single semiconductor ...
We experimentally determine the lasing mode(s) in optically pumped semiconductor nanowire lasers. Th...
© 2015 American Chemical Society. We experimentally determine the lasing mode(s) in optically pumped...
There is considerable interest in ultra-small coherent light sources. A strong candidate is a semico...
Coherent light sources confining the light below the vacuum wavelength barrier will drive future con...
Semiconductor nanowire lasers are single-element structures that can act as both gain material and c...
International audienceWe review principles and trends in the use of semiconductor nanowires as gain ...
Semiconductor nanowires (or other wire-like nanostructures, including nano-ribbons and nanobelts) sy...
Semiconductor nanowire (NW) lasers are a promising technology for the realization of coherent optica...
Design of cylindrical metal-clad semiconductor nano-lasers is undertaken. Specific attention is give...
Semiconductor nanowires offer a promising route of realizing nanolasers for the next generation of c...
The development of small, power-efficient lasers underpins many of the technologies that we uti...
Semiconductor nanowire (NW) lasers are a promising technology for the realization of coherent optica...
Semiconductor nanowire (NW) lasers have attracted considerable research effort given their excellent...
In recent years there has been a tremendous interest in nanoscale optoelectronic devices. Among the...
We experimentally demonstrate the directional emission of polarized light from single semiconductor ...
We experimentally determine the lasing mode(s) in optically pumped semiconductor nanowire lasers. Th...
© 2015 American Chemical Society. We experimentally determine the lasing mode(s) in optically pumped...
There is considerable interest in ultra-small coherent light sources. A strong candidate is a semico...
Coherent light sources confining the light below the vacuum wavelength barrier will drive future con...
Semiconductor nanowire lasers are single-element structures that can act as both gain material and c...
International audienceWe review principles and trends in the use of semiconductor nanowires as gain ...
Semiconductor nanowires (or other wire-like nanostructures, including nano-ribbons and nanobelts) sy...
Semiconductor nanowire (NW) lasers are a promising technology for the realization of coherent optica...
Design of cylindrical metal-clad semiconductor nano-lasers is undertaken. Specific attention is give...
Semiconductor nanowires offer a promising route of realizing nanolasers for the next generation of c...
The development of small, power-efficient lasers underpins many of the technologies that we uti...
Semiconductor nanowire (NW) lasers are a promising technology for the realization of coherent optica...
Semiconductor nanowire (NW) lasers have attracted considerable research effort given their excellent...
In recent years there has been a tremendous interest in nanoscale optoelectronic devices. Among the...
We experimentally demonstrate the directional emission of polarized light from single semiconductor ...