Efficient sources of indistinguishable single photons are a key resource for various applications in fields like quantum sensing, quantum metrology and quantum information processing. In this contribution we report on single photon generation based on III-V semiconductor quantum dots (QDs). To increase the emission efficiency of single photons, it is essential to tailor the radiative properties of the quantum dot emitters by engineering their photonic environment. We present optimized single photon emitters being based on both micropillar and photonics crystal cavities, for applications in a vertical platform and on-chip in-plane platform, respectively. Electrically driven single photon sources with self assembled semiconductor QDs embedded...
We report on a quantum dot micropillar-based single-photon source demonstrating tunable emission ene...
The interaction of light with matter is of fundamental importance, and is the mechanism that governs...
Scalable quantum photonic architectures demand highly efficient, high-purity single-photon sources, ...
Efficient sources of indistinguishable single photons are a key resource for various applications in...
Significant advances have been made in the past five years in realizing photon sources based on vari...
In order to harness the enormous potential of schemes in optical quantum information processing, rea...
We report a study on single photons emitted by single quantum dots into ridge and photonic crystal w...
We investigate single-photon generation from individual self-assembled InGaAs quantum dots coupled t...
We investigate single-photon generation from individual self-assembled InGaAs quantum dots coupled t...
Single photon sources are important components for future quantum communication networks. Lights emi...
This paper describes the progress towards the realization of efficient single-photon sources based o...
Optoelectronic devices that provide non-classical light states on demand have a broad range of appli...
We develop a single-photon source based on single InAs/GaAs quantum dots in a nanobeam photonic crys...
International audienceThe development of efficient solid-state sources of single photons is a major ...
Non-classical light sources offer a myriad of possibilities in both fundamental science and commerci...
We report on a quantum dot micropillar-based single-photon source demonstrating tunable emission ene...
The interaction of light with matter is of fundamental importance, and is the mechanism that governs...
Scalable quantum photonic architectures demand highly efficient, high-purity single-photon sources, ...
Efficient sources of indistinguishable single photons are a key resource for various applications in...
Significant advances have been made in the past five years in realizing photon sources based on vari...
In order to harness the enormous potential of schemes in optical quantum information processing, rea...
We report a study on single photons emitted by single quantum dots into ridge and photonic crystal w...
We investigate single-photon generation from individual self-assembled InGaAs quantum dots coupled t...
We investigate single-photon generation from individual self-assembled InGaAs quantum dots coupled t...
Single photon sources are important components for future quantum communication networks. Lights emi...
This paper describes the progress towards the realization of efficient single-photon sources based o...
Optoelectronic devices that provide non-classical light states on demand have a broad range of appli...
We develop a single-photon source based on single InAs/GaAs quantum dots in a nanobeam photonic crys...
International audienceThe development of efficient solid-state sources of single photons is a major ...
Non-classical light sources offer a myriad of possibilities in both fundamental science and commerci...
We report on a quantum dot micropillar-based single-photon source demonstrating tunable emission ene...
The interaction of light with matter is of fundamental importance, and is the mechanism that governs...
Scalable quantum photonic architectures demand highly efficient, high-purity single-photon sources, ...