© 2015 Optical Society of America. The development of a thresholdless laser operating above room temperature (RT) is key for the future replacement of electronics with photonic integrated circuits, enabling an increase of several orders of magnitude in computing speeds. Recently, thresholdless lasing characteristics at low temperature (4 K) have been demonstrated. However, for practical applications, RT laser emission becomes necessary. Here we report experimental evidence that is compatible with a laser based on InAsSb quantum dots embedded in a photonic-crystal microcavity that exhibits an ultralow-power threshold (860 nW) and high efficiency (ß = 0.85), thus operating in the near-thresholdless regime at RT in the 1.3 µm spectral window. ...
Nanolasers that operate under the continuous-wave pump and are robust in diverse environments will m...
An important advantage of the quantum dot (QD) laser diode is its ability to reach lasing threshold ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
A Strong temperature dependence of microdisk lasers and photonic crystal nanocavity lasers with InAs...
Photonic crystal slab enables us to form an ultrasmall laser cavity with a modal volume close to the...
International audienceThe authors report on the design, fabrication and operation of heterogeneous a...
We present an optically pumped InGaAsP microtube laser operating in the 1.64 \u3bcm wavelength range...
We report on the growth and characterization of low threshold 1.32-μm quantum dots (QDs) laser diode...
UnrestrictedBasic concepts on photonic microcavity and nanocavity devices with quantum dot active ma...
The paper reports on the first experimental demonstration of low-threshold lasing in photonic nanoca...
Semiconductor quantum dots have replaced conventional inorganic phosphors in numerous applications. ...
The ongoing miniaturization of semiconductor lasers has enabled ultra‐low threshold devices and even...
Nano-emitters are the new generation of laser devices. A photonic-crystal cavity, which highly confi...
International audienceWe have designed, fabricated, and characterized an InP photonic crystal slab s...
We demonstrate an on-chip toroidal microcavity nanocrystal quantum dot laser with a threshold energy...
Nanolasers that operate under the continuous-wave pump and are robust in diverse environments will m...
An important advantage of the quantum dot (QD) laser diode is its ability to reach lasing threshold ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
A Strong temperature dependence of microdisk lasers and photonic crystal nanocavity lasers with InAs...
Photonic crystal slab enables us to form an ultrasmall laser cavity with a modal volume close to the...
International audienceThe authors report on the design, fabrication and operation of heterogeneous a...
We present an optically pumped InGaAsP microtube laser operating in the 1.64 \u3bcm wavelength range...
We report on the growth and characterization of low threshold 1.32-μm quantum dots (QDs) laser diode...
UnrestrictedBasic concepts on photonic microcavity and nanocavity devices with quantum dot active ma...
The paper reports on the first experimental demonstration of low-threshold lasing in photonic nanoca...
Semiconductor quantum dots have replaced conventional inorganic phosphors in numerous applications. ...
The ongoing miniaturization of semiconductor lasers has enabled ultra‐low threshold devices and even...
Nano-emitters are the new generation of laser devices. A photonic-crystal cavity, which highly confi...
International audienceWe have designed, fabricated, and characterized an InP photonic crystal slab s...
We demonstrate an on-chip toroidal microcavity nanocrystal quantum dot laser with a threshold energy...
Nanolasers that operate under the continuous-wave pump and are robust in diverse environments will m...
An important advantage of the quantum dot (QD) laser diode is its ability to reach lasing threshold ...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...