We demonstrate plasmonically nano-engineered coherent random lasing and stimulated emission enhancement in a hybrid gainmedium of organic semiconductors doped with core-shell plasmonic nanoparticles. The gain medium is composed of a 300 +/- 2 nm thin waveguide of an organic semiconductor, doped with 53 nm gold nanoparticle cores, isolated within silica shells. Upon loading the nanoparticles, the threshold of amplified spontaneous emission is reduced from 1.75 mu J cm(-2) x 10(2) for an undoped gain medium, to 0.35 mu J cm(-2) x 10(2) for a highly concentrated gain medium, and lasing spikes narrower than 0.1 nm are obtained. Most importantly, selection of silica shells with thicknesses of 10, 17 and 21 nm enables engineering of the plasmon-e...
Abstract Random lasing is desired in plasmonics nanostructures through surface plasmo...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Plasmonic nanostructures such as gold nanprods and gold nanostars are profoundly used in photolumine...
Here, we report that hybrid multilayered plasmonic nanostars can be universally used as feedback age...
Random lasing occurs as the result of a coherent optical feedback from multiple scattering centers. ...
Since its invention in 1960, the laser has seen tremendous developments and has quickly revolutioniz...
In this letter, the random laser is fabricated by an active waveguide structure constructed by cover...
We numerically investigate and experimentally demonstrate a new route to controllably manipulate the...
Plasmonic random lasers continue to generate significant interest in the fields of optics and photon...
Threshold reduction and emission enhancement are reported for a gold nanoparticle-based waveguided r...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
Organic-inorganic hybrid perovskite has attracted intensive attention from researchers as the gain m...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...
Plasmonics has brought revolutionary advances to laser science by enabling deeply subwavelength nano...
We report our results on a plasmonic random laser with three-dimensional (3D) gold nano-urchins as s...
Abstract Random lasing is desired in plasmonics nanostructures through surface plasmo...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Plasmonic nanostructures such as gold nanprods and gold nanostars are profoundly used in photolumine...
Here, we report that hybrid multilayered plasmonic nanostars can be universally used as feedback age...
Random lasing occurs as the result of a coherent optical feedback from multiple scattering centers. ...
Since its invention in 1960, the laser has seen tremendous developments and has quickly revolutioniz...
In this letter, the random laser is fabricated by an active waveguide structure constructed by cover...
We numerically investigate and experimentally demonstrate a new route to controllably manipulate the...
Plasmonic random lasers continue to generate significant interest in the fields of optics and photon...
Threshold reduction and emission enhancement are reported for a gold nanoparticle-based waveguided r...
Laser science has tackled physical limitations to achieve higher power, faster and smaller light sou...
Organic-inorganic hybrid perovskite has attracted intensive attention from researchers as the gain m...
Lasing in organic media with very low gain has been pursued for a long time in optoelectronics. Here...
Plasmonics has brought revolutionary advances to laser science by enabling deeply subwavelength nano...
We report our results on a plasmonic random laser with three-dimensional (3D) gold nano-urchins as s...
Abstract Random lasing is desired in plasmonics nanostructures through surface plasmo...
Laser science has been successful in producing increasingly high-powered, faster and smaller coheren...
Plasmonic nanostructures such as gold nanprods and gold nanostars are profoundly used in photolumine...