True on-demand high-repetition-rate single-photon sources are highly sought after for quantum information processing applications. However, any coherently driven two-level quantum system suffers from a finite re-excitation probability under pulsed excitation, causing undesirable multi-photon emission. Here, we present a solid-state source of on-demand single photons yielding a raw second-order coherence of g(2)(0)=(7.5±1.6)×10-5 without any background subtraction or data processing. To this date, this is the lowest value of g(2)(0) reported for any single-photon source even compared to the previously reported best background subtracted values. We achieve this result on GaAs/AlGaAs quantum dots embedded in a low-Q planar cavity by employing ...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Single photons are attractive candidates of quantum bits (qubits) for quantum computation and are th...
True on-demand high-repetition-rate single-photon sources are highly sought after for quantum inform...
The scaling of optical quantum technologies requires efficient, on-demand sources of highly indistin...
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...
Single photons are attractive candidates of quantum bits (qubits) for quantum computation and are th...
A single-photon source capable of emitting indistinguishable photons is a key element in schemes for...
With the recent progresses in quantum technologies, single photon sources have gained a primary rele...
Single-quantum emitters emit only one photon at a time(1,2), but the properties of the photon depend...
Low noise single-photon sources are a critical element for quantum technologies. We present a herald...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
Low noise single-photon sources are a critical element for quantum technologies. We present a herald...
We report an electrically driven semiconductor single-photon source capable of emitting photons with...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Single photons are attractive candidates of quantum bits (qubits) for quantum computation and are th...
True on-demand high-repetition-rate single-photon sources are highly sought after for quantum inform...
The scaling of optical quantum technologies requires efficient, on-demand sources of highly indistin...
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...
Single photons are attractive candidates of quantum bits (qubits) for quantum computation and are th...
A single-photon source capable of emitting indistinguishable photons is a key element in schemes for...
With the recent progresses in quantum technologies, single photon sources have gained a primary rele...
Single-quantum emitters emit only one photon at a time(1,2), but the properties of the photon depend...
Low noise single-photon sources are a critical element for quantum technologies. We present a herald...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
Low noise single-photon sources are a critical element for quantum technologies. We present a herald...
We report an electrically driven semiconductor single-photon source capable of emitting photons with...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Single photons are attractive candidates of quantum bits (qubits) for quantum computation and are th...