Isolated impurity states in epitaxially grown semiconductor systems possess important radiative features such as distinct wavelength emission with a very short radiative lifetime and low inhomogeneous broadening, which make them promising for the generation of indistinguishable single photons. In this study, we investigate chlorine-doped ZnSe/ZnMgSe quantum well (QW) nanopillar (NP) structures as a highly efficient solid-state single-photon source operating at cryogenic temperatures. We show that single photons are generated due to the radiative recombination of excitons bound to neutral Cl atoms in ZnSe QW and the energy of the emitted photon can be tuned from about 2.85 down to 2.82 eV with ZnSe well width increase from 2.7 to 4.7 nm. Fol...
In recent years, quantum-dot-like single-photon emitters in atomically thin van der Waals materials ...
Colloidal core/shell InP/ZnSe quantum dots (QDs), recently produced using an improved synthesis meth...
Colloidal core/shell InP/ZnSe quantum dots (QDs), recently produced using an improved synthesis meth...
Isolated impurity states in epitaxially grown semiconductor systems possess important radiative feat...
Isolated impurity states in epitaxially grown semiconductor systems possess important radiative feat...
Quantum light sources and spin-based qubits are essential building blocks for on-chip scalable quant...
Single-photon sources are crucial for developing secure telecommunications. However, most systems op...
International audienceWe report the growth of ZnSe nanowires and nanoneedles using molecular beam ep...
Impurity-bound excitons in ZnSe quantum wells are bright single photon emitters--a crucial element i...
Defects in wide-band-gap semiconductors are promising qubit candidates for quantum communication and...
We report on a detailed investigation on the temperature-dependent behavior of photoluminescence fro...
International audienceWe report on our development of fabrication of CdSe QD in ZnSe nanowire. We ha...
ZnSe nanowires and nanobelts with zinc blende structure have been synthesized. The morphology and th...
Defects in wide-bandgap semiconductors are promising qubit candidates for quantum communication and ...
ZnSe nanowires and nanobelts with zinc blende structure have been synthesized. The morphology and th...
In recent years, quantum-dot-like single-photon emitters in atomically thin van der Waals materials ...
Colloidal core/shell InP/ZnSe quantum dots (QDs), recently produced using an improved synthesis meth...
Colloidal core/shell InP/ZnSe quantum dots (QDs), recently produced using an improved synthesis meth...
Isolated impurity states in epitaxially grown semiconductor systems possess important radiative feat...
Isolated impurity states in epitaxially grown semiconductor systems possess important radiative feat...
Quantum light sources and spin-based qubits are essential building blocks for on-chip scalable quant...
Single-photon sources are crucial for developing secure telecommunications. However, most systems op...
International audienceWe report the growth of ZnSe nanowires and nanoneedles using molecular beam ep...
Impurity-bound excitons in ZnSe quantum wells are bright single photon emitters--a crucial element i...
Defects in wide-band-gap semiconductors are promising qubit candidates for quantum communication and...
We report on a detailed investigation on the temperature-dependent behavior of photoluminescence fro...
International audienceWe report on our development of fabrication of CdSe QD in ZnSe nanowire. We ha...
ZnSe nanowires and nanobelts with zinc blende structure have been synthesized. The morphology and th...
Defects in wide-bandgap semiconductors are promising qubit candidates for quantum communication and ...
ZnSe nanowires and nanobelts with zinc blende structure have been synthesized. The morphology and th...
In recent years, quantum-dot-like single-photon emitters in atomically thin van der Waals materials ...
Colloidal core/shell InP/ZnSe quantum dots (QDs), recently produced using an improved synthesis meth...
Colloidal core/shell InP/ZnSe quantum dots (QDs), recently produced using an improved synthesis meth...