Single self-assembled semiconductor quantum dots (QDs) are able to emit single-photons and entangled-photons pairs. They are therefore considered as potential candidate building blocks for quantum information processing (QIP) and communication. To exploit them fully, the ability to precisely control their optical properties is needed due to several reasons. For example, the stochastic nature of their growth ends up with only little probability of finding any two or more QDs emitting indistinguishable photons. These are required for two-photon quantum interference (partial Bell-state measurement), which lies at the heart of linear optics QIP. Also, most of the as-grown QDs do not fulfil the symmetries required for generation of entangled-pho...
Reversible biaxial strains are used for tuning the emission wavelengths of high quality GaAs/AlGaAs ...
Reversible biaxial strains are used for tuning the emission wavelengths of high quality GaAs/AlGaAs ...
Quantum dots (QDs) are semiconductor nanoparticles that trap electrons and holes in all three dimens...
Single self-assembled semiconductor quantum dots (QDs) are able to emit single-photons and entangled...
Single self-assembled semiconductor quantum dots (QDs) are able to emit single-photons and entangled...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
The practical realisation of photonic quantum technologies on a solid-state platform implies the dev...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Self-assembled quantum dots (QDs) offer versatile sources of quantum light for photonic quantum tech...
Reversible biaxial strains are used for tuning the emission wavelengths of high quality GaAs/AlGaAs ...
Reversible biaxial strains are used for tuning the emission wavelengths of high quality GaAs/AlGaAs ...
Quantum dots (QDs) are semiconductor nanoparticles that trap electrons and holes in all three dimens...
Single self-assembled semiconductor quantum dots (QDs) are able to emit single-photons and entangled...
Single self-assembled semiconductor quantum dots (QDs) are able to emit single-photons and entangled...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
The practical realisation of photonic quantum technologies on a solid-state platform implies the dev...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
Polarization entangled photon pairs on demand are considered to be an important building block of qu...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Self-assembled quantum dots (QDs) offer versatile sources of quantum light for photonic quantum tech...
Reversible biaxial strains are used for tuning the emission wavelengths of high quality GaAs/AlGaAs ...
Reversible biaxial strains are used for tuning the emission wavelengths of high quality GaAs/AlGaAs ...
Quantum dots (QDs) are semiconductor nanoparticles that trap electrons and holes in all three dimens...