High symmetry epitaxial quantum dots (QDs) with three or more symmetry planes provide a very promising route for the generation of entangled photons for quantum information applications. The great challenge to fabricate nanoscopic high symmetry QDs is further complicated by the lack of structural characterization techniques able to resolve small symmetry breaking. In this work, we present an approach for identifying and analyzing the signatures of symmetry breaking in the optical spectra of QDs. Exciton complexes in InGaAs/AlGaAs QDs grown along the [111]B crystalline axis in inverted tetrahedral pyramids are studied by polarization resolved photoluminescence spectroscopy combined with lattice temperature dependence, excitation power depend...
Linear polarization of the multiexciton emission from self-assembled quantum dots is investigated by...
International audienceThe emission cascade of a single quantum dot is a promising source of entangle...
International audienceThe emission cascade of a single quantum dot is a promising source of entangle...
Quantum dots (QDs) of high symmetry (e.g., C-3 nu) have degenerate bright exciton states, unlike QDs...
We present results on the polarization-resolved photoluminescence emitted from InGaAs/AlGaAs single ...
GaAs quantum dots (QDs) have recently emerged as state-of-the-art semiconductor sources of polarizat...
The results of a group theoretical analysis of the excitonic fine structure are presented and compar...
Fine-structure splitting (FSS) of excitons in semiconductor nanostructures is a key parameter that h...
Fine-structure splitting (FSS) of excitons in semiconductor nanostructures is a key parameter that h...
Fine-structure splitting (FSS) of excitons in semiconductor nanostructures is a key parameter that h...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
In this experimental and theoretical study, it was found that the emission pattern of the doubly pos...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
In this experimental and theoretical study, it was found that the emission pattern of the doubly pos...
In this experimental and theoretical study, it was found that the emission pattern of the doubly pos...
Linear polarization of the multiexciton emission from self-assembled quantum dots is investigated by...
International audienceThe emission cascade of a single quantum dot is a promising source of entangle...
International audienceThe emission cascade of a single quantum dot is a promising source of entangle...
Quantum dots (QDs) of high symmetry (e.g., C-3 nu) have degenerate bright exciton states, unlike QDs...
We present results on the polarization-resolved photoluminescence emitted from InGaAs/AlGaAs single ...
GaAs quantum dots (QDs) have recently emerged as state-of-the-art semiconductor sources of polarizat...
The results of a group theoretical analysis of the excitonic fine structure are presented and compar...
Fine-structure splitting (FSS) of excitons in semiconductor nanostructures is a key parameter that h...
Fine-structure splitting (FSS) of excitons in semiconductor nanostructures is a key parameter that h...
Fine-structure splitting (FSS) of excitons in semiconductor nanostructures is a key parameter that h...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
In this experimental and theoretical study, it was found that the emission pattern of the doubly pos...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
In this experimental and theoretical study, it was found that the emission pattern of the doubly pos...
In this experimental and theoretical study, it was found that the emission pattern of the doubly pos...
Linear polarization of the multiexciton emission from self-assembled quantum dots is investigated by...
International audienceThe emission cascade of a single quantum dot is a promising source of entangle...
International audienceThe emission cascade of a single quantum dot is a promising source of entangle...