Reliable single photon sources constitute the basis of schemes for quantum communication and measurement based quantum computing. Solid state single photon sources based on quantum dots are convenient and versatile but the electronic transitions that generate the photons are subject to interactions with lattice vibrations. Using a microscopic model of electron-phonon interactions and a quantum master equation, we here examine phonon-induced decoherence and assess its impact on the rate of production, and indistinguishability, of single photons emitted from an optically driven quantum dot system. We find that, above a certain threshold of desired indistinguishability, it is possible to mitigate the deleterious effects of phonons by exploitin...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
Integrated quantum light sources in photonic circuits are envisaged as the building blocks of future...
International audienceWe have computed the spectrum emitted spontaneously by a quantum dot coupled t...
Reliable single photon sources constitute the basis of schemes for quantum communication and measure...
Semiconductor quantum dots (QDs) have recently emerged as a leading platform to generate highly indi...
We investigate the temperature dependence of photon coherence properties through two-photon interfer...
We acknowledge support by the State of Bavaria and the German Ministry of Education and Research (BM...
We investigate two schemes for generating indistinguishable single photons, a key feature of quantum...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
Single photons from semiconductor quantum dots are promising resources for linear optical quantum c...
Resonance fluorescence in the Heitler regime provides access to single photons with coherence well b...
International audienceAn on-going challenge within scalable optical quantum information processing i...
Over the past decade, the quest for photon-based quantum information processing schemes has fueled i...
International audienceAn on-going challenge within scalable optical quantum information processing i...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
Integrated quantum light sources in photonic circuits are envisaged as the building blocks of future...
International audienceWe have computed the spectrum emitted spontaneously by a quantum dot coupled t...
Reliable single photon sources constitute the basis of schemes for quantum communication and measure...
Semiconductor quantum dots (QDs) have recently emerged as a leading platform to generate highly indi...
We investigate the temperature dependence of photon coherence properties through two-photon interfer...
We acknowledge support by the State of Bavaria and the German Ministry of Education and Research (BM...
We investigate two schemes for generating indistinguishable single photons, a key feature of quantum...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
Single photons from semiconductor quantum dots are promising resources for linear optical quantum c...
Resonance fluorescence in the Heitler regime provides access to single photons with coherence well b...
International audienceAn on-going challenge within scalable optical quantum information processing i...
Over the past decade, the quest for photon-based quantum information processing schemes has fueled i...
International audienceAn on-going challenge within scalable optical quantum information processing i...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
Integrated quantum light sources in photonic circuits are envisaged as the building blocks of future...
International audienceWe have computed the spectrum emitted spontaneously by a quantum dot coupled t...