Abstract We report optical positioning of single quantum dots (QDs) in planar distributed Bragg reflector (DBR) cavity with an average position uncertainty of ≈20 nm using an optimized photoluminescence imaging method. We create single-photon sources based on these QDs in determined micropillar cavities. The brightness of the QD fluorescence is greatly enhanced on resonance with the fundamental mode of the cavity, leading to an high extraction efficiency of 68% ± 6% into a lens with numerical aperture of 0.65, and simultaneously exhibiting low multi-photon probability (g(2)(0) = 0.144 ± 0.012) at this collection efficiency
Scalable quantum photonic architectures demand highly efficient, high-purity single-photon sources, ...
We demonstrate that single photons can be generated from single InAs/GaAs quantum dots in photolitho...
Single photon sources are important components for future quantum communication networks. Lights emi...
We report on the observation of bright emission of single photons under pulsed resonance fluorescenc...
Efficient sources of indistinguishable single photons are a key resource for various applications in...
Bright single-photon emission from single quantum dots (QDs) in suspended circular Bragg grating mic...
Abstract A pronounced high count rate of single-photon emission at the wavelength of 1.3 μm that is ...
Significant advances have been made in the past five years in realizing photon sources based on vari...
Scalable photonic quantum technologies require on-demand single-photon sources with simultaneously h...
Self-assembled, epitaxially grown InAs/GaAs quantum dots (QDs) are promising semiconductor quantum e...
The generation of photon pairs in single quantum dots is based on a process that is, in its nature, ...
We have demonstrated efficient production of triggered single photons by coupling a single semicondu...
We report on a quasi-planar quantum-dot-based single-photon source that shows an unprecedented high ...
Optoelectronic devices that provide non-classical light states on demand have a broad range of appli...
Within this work we propose and demonstrate a technological approach to efficiently suppress excitat...
Scalable quantum photonic architectures demand highly efficient, high-purity single-photon sources, ...
We demonstrate that single photons can be generated from single InAs/GaAs quantum dots in photolitho...
Single photon sources are important components for future quantum communication networks. Lights emi...
We report on the observation of bright emission of single photons under pulsed resonance fluorescenc...
Efficient sources of indistinguishable single photons are a key resource for various applications in...
Bright single-photon emission from single quantum dots (QDs) in suspended circular Bragg grating mic...
Abstract A pronounced high count rate of single-photon emission at the wavelength of 1.3 μm that is ...
Significant advances have been made in the past five years in realizing photon sources based on vari...
Scalable photonic quantum technologies require on-demand single-photon sources with simultaneously h...
Self-assembled, epitaxially grown InAs/GaAs quantum dots (QDs) are promising semiconductor quantum e...
The generation of photon pairs in single quantum dots is based on a process that is, in its nature, ...
We have demonstrated efficient production of triggered single photons by coupling a single semicondu...
We report on a quasi-planar quantum-dot-based single-photon source that shows an unprecedented high ...
Optoelectronic devices that provide non-classical light states on demand have a broad range of appli...
Within this work we propose and demonstrate a technological approach to efficiently suppress excitat...
Scalable quantum photonic architectures demand highly efficient, high-purity single-photon sources, ...
We demonstrate that single photons can be generated from single InAs/GaAs quantum dots in photolitho...
Single photon sources are important components for future quantum communication networks. Lights emi...