Developing a quantum photonics network requires a source of very-high-fidelity single photons. An outstanding challenge is to produce a transform-limited single-photon emitter to guarantee that single photons emitted far apart in the time domain are truly indistinguishable. This is particularly difficult in the solid-state as the complex environment is the source of noise over a wide bandwidth. A quantum dot is a robust, fast, bright and narrow-linewidth emitter of single photons; layer-by-layer growth and subsequent nano-fabrication allow the electronic and photonic states to be engineered. This represents a set of features not shared by any other emitter but transform-limited linewidths have been elusive. Here, we report transform-limited...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
Hybrid interfaces between distinct quantum systems play a major role in the implementation of quantu...
Planar nanophotonic structures enable broadband, near-unity coupling of emission from quan...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
The scaling of optical quantum technologies requires efficient, on-demand sources of highly indistin...
In this Letter, we present narrow line width (7 μeV), nearly background-free single-photon emission ...
The majority of photonic quantum information technologies rely on single photons that have high puri...
One of the key challenges in developing quantum networks is to generate single photons with high bri...
Single photons from semiconductor quantum dots are promising resources for linear optical quantum c...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
The desiderata for an ideal photon source are high brightness, high single-photon purity, and high i...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...
Light emission from solid-state quantum emitters is inherently prone to environmental decoherence, w...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
Hybrid interfaces between distinct quantum systems play a major role in the implementation of quantu...
Planar nanophotonic structures enable broadband, near-unity coupling of emission from quan...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
The scaling of optical quantum technologies requires efficient, on-demand sources of highly indistin...
In this Letter, we present narrow line width (7 μeV), nearly background-free single-photon emission ...
The majority of photonic quantum information technologies rely on single photons that have high puri...
One of the key challenges in developing quantum networks is to generate single photons with high bri...
Single photons from semiconductor quantum dots are promising resources for linear optical quantum c...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
The desiderata for an ideal photon source are high brightness, high single-photon purity, and high i...
This work was supported by the National Natural Science Foundation of China, the Chinese Academy of ...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Communication oraleInternational audienceSingle photon emission is one of the most striking optical ...
Light emission from solid-state quantum emitters is inherently prone to environmental decoherence, w...
Establishing a highly efficient photon-emitter interface where the intrinsic linewidth broadening is...
Hybrid interfaces between distinct quantum systems play a major role in the implementation of quantu...
Planar nanophotonic structures enable broadband, near-unity coupling of emission from quan...