A single radiative transition in a single-quantum emitter results in the emission of a single photon. Single quantum dots are single-quantum emitters with all the requirements to generate single photons at visible and near-infrared wavelengths. It is also possible to generate more than single photons with single quantum dots. In this paper we show that single quantum dots can be used to generate non-classical states of light, from single photons to photon triplets. Advanced solid state structures can be fabricated with single quantum dots as their active region. We also show results obtained on devices based on single quantum dots.Peer Reviewe
This work was financially supported by the German Ministry of Education and Research (BMBF) via the ...
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...
A single radiative transition in a single-quantum emitter results in the emission of a single photon...
The emission statistics of single semiconductor quantum dots is investigated in view of generating q...
For the past fifteen years, single semiconductor quantum dots, often referred to as solid-...
International audienceFor the past fifteen years, single semiconductor quantum dots, often referred ...
The luminescence from single quantum dots has been studied. Single dot photoluminescence was studied...
Single photons are a fundamental element of most quantum optical technologies. The ideal single-phot...
Lasers and LEDs have a statistical distribution in the number of photons emitted within a given time...
This book reviews recent advances in the exciting and rapid growing field of semiconductor quantum d...
Compact and reliable sources of non-classical light could find many applications in emerging technol...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
Single and entangled photon sources are fundamental building blocks of future light-based quantum te...
The excitation of a quantum dot from its ground state depends on the probabilistic nature of carrier...
This work was financially supported by the German Ministry of Education and Research (BMBF) via the ...
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...
A single radiative transition in a single-quantum emitter results in the emission of a single photon...
The emission statistics of single semiconductor quantum dots is investigated in view of generating q...
For the past fifteen years, single semiconductor quantum dots, often referred to as solid-...
International audienceFor the past fifteen years, single semiconductor quantum dots, often referred ...
The luminescence from single quantum dots has been studied. Single dot photoluminescence was studied...
Single photons are a fundamental element of most quantum optical technologies. The ideal single-phot...
Lasers and LEDs have a statistical distribution in the number of photons emitted within a given time...
This book reviews recent advances in the exciting and rapid growing field of semiconductor quantum d...
Compact and reliable sources of non-classical light could find many applications in emerging technol...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
Single and entangled photon sources are fundamental building blocks of future light-based quantum te...
The excitation of a quantum dot from its ground state depends on the probabilistic nature of carrier...
This work was financially supported by the German Ministry of Education and Research (BMBF) via the ...
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...