Nanolasers that operate under the continuous-wave pump and are robust in diverse environments will make possible compact optoelectronic devices, biomedical imaging, and large-scale quantum photonics. However, current nanolasers require low temperatures or pulsed excitation because their small mode volumes severely limit gain relative to cavity loss. Here, I will present continuous-wave upconverting micro- and nanolasing at room temperature with record-low thresholds and high photostability. I will explore the future implications of such a low-threshold laser for optofluidics
GaInAsP photonic crystal (PC) point-shift nanolasers operate at room temperature and under pulsed an...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Ultralow-threshold continuous-wave lasing is achieved at room temperature in a fused-silica microsph...
Nanolasers that operate under the continuous-wave pump and are robust in diverse environments will m...
Abstract: Nanolasers that operate under continuous-wave pump and are robust in diverse environments ...
Miniaturized lasers are an emerging platform for generating coherent light for quantum photonics, in...
Photonic crystal slab enables us to form an ultrasmall laser cavity with a modal volume close to the...
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...
Microscale lasers efficiently deliver coherent photons into small volumes for intracellular biosenso...
Upconversion microlasers present a lot of advantages but also require high pumping powers. Here the ...
Plasmonic nanolasers and spasers continue to attract a great deal of interest from the physics and n...
Micron-sized lasers fabricated from upconverting nanoparticles (UCNP) coupled to whispering gallery ...
Nanoscale light sources are being intensively investigated for their potential to enable low-energy,...
© 2015 Optical Society of America. The development of a thresholdless laser operating above room tem...
GaInAsP photonic crystal (PC) point-shift nanolasers operate at room temperature and under pulsed an...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Ultralow-threshold continuous-wave lasing is achieved at room temperature in a fused-silica microsph...
Nanolasers that operate under the continuous-wave pump and are robust in diverse environments will m...
Abstract: Nanolasers that operate under continuous-wave pump and are robust in diverse environments ...
Miniaturized lasers are an emerging platform for generating coherent light for quantum photonics, in...
Photonic crystal slab enables us to form an ultrasmall laser cavity with a modal volume close to the...
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...
Microscale lasers efficiently deliver coherent photons into small volumes for intracellular biosenso...
Upconversion microlasers present a lot of advantages but also require high pumping powers. Here the ...
Plasmonic nanolasers and spasers continue to attract a great deal of interest from the physics and n...
Micron-sized lasers fabricated from upconverting nanoparticles (UCNP) coupled to whispering gallery ...
Nanoscale light sources are being intensively investigated for their potential to enable low-energy,...
© 2015 Optical Society of America. The development of a thresholdless laser operating above room tem...
GaInAsP photonic crystal (PC) point-shift nanolasers operate at room temperature and under pulsed an...
Plasmonic nanolasers have ultrahigh lasing thresholds, especially those devices for which all three ...
Ultralow-threshold continuous-wave lasing is achieved at room temperature in a fused-silica microsph...