Reducing the size of lasers to microscale dimensions enables new technologies1 that are specifically tailored for operation in confined spaces ranging from ultra-high-speed microprocessors2 to live brain tissue3. However, reduced cavity sizes increase optical losses and require greater input powers to reach lasing thresholds. Multiphoton-pumped lasers4-7 that have been miniaturized using nanomaterials such as lanthanide-doped upconverting nanoparticles (UCNPs)8 as lasing media require high pump intensities to achieve ultraviolet and visible emission and therefore operate under pulsed excitation schemes. Here, we make use of the recently described energy-looping excitation mechanism in Tm3+-doped UCNPs9 to achieve continuous-wave upconverted...
© 2018 The Publisher. Stable, sharp-bandwidth and upconverted stimulated emissions are generated fro...
Optical methods for imaging and stimulation of biological events based on the use of visible light a...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
Reducing the size of lasers to microscale dimensions enables new technologies1 that are specifically...
Reducing the size of lasers to microscale dimensions enables new technologies1 that are specifically...
Micron-sized lasers fabricated from upconverting nanoparticles (UCNP) coupled to whispering gallery ...
Abstract: Nanolasers that operate under continuous-wave pump and are robust in diverse environments ...
Microscale lasers efficiently deliver coherent photons into small volumes for intracellular biosenso...
Nanolasers that operate under the continuous-wave pump and are robust in diverse environments will m...
Miniaturized lasers are an emerging platform for generating coherent light for quantum photonics, in...
Lanthanide-doped nanocrystals (NCs), which found applications in bioimaging and labeling, have recen...
Upconversion microlasers present a lot of advantages but also require high pumping powers. Here the ...
Ultralow-threshold continuous-wave lasing is achieved at room temperature in a fused-silica microsph...
PolyU Library Call No.: [THS] LG51 .H577P AP 2016 Jinxxii, 150 pages :color illustrationsLanthanide-...
Lasing particles are emerging tools for amplifying light-matter interactions at the biointerface by ...
© 2018 The Publisher. Stable, sharp-bandwidth and upconverted stimulated emissions are generated fro...
Optical methods for imaging and stimulation of biological events based on the use of visible light a...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...
Reducing the size of lasers to microscale dimensions enables new technologies1 that are specifically...
Reducing the size of lasers to microscale dimensions enables new technologies1 that are specifically...
Micron-sized lasers fabricated from upconverting nanoparticles (UCNP) coupled to whispering gallery ...
Abstract: Nanolasers that operate under continuous-wave pump and are robust in diverse environments ...
Microscale lasers efficiently deliver coherent photons into small volumes for intracellular biosenso...
Nanolasers that operate under the continuous-wave pump and are robust in diverse environments will m...
Miniaturized lasers are an emerging platform for generating coherent light for quantum photonics, in...
Lanthanide-doped nanocrystals (NCs), which found applications in bioimaging and labeling, have recen...
Upconversion microlasers present a lot of advantages but also require high pumping powers. Here the ...
Ultralow-threshold continuous-wave lasing is achieved at room temperature in a fused-silica microsph...
PolyU Library Call No.: [THS] LG51 .H577P AP 2016 Jinxxii, 150 pages :color illustrationsLanthanide-...
Lasing particles are emerging tools for amplifying light-matter interactions at the biointerface by ...
© 2018 The Publisher. Stable, sharp-bandwidth and upconverted stimulated emissions are generated fro...
Optical methods for imaging and stimulation of biological events based on the use of visible light a...
We investigate the feasibility of activating coherent mechanical oscillations in lasing microspheres...