Coupling individual quantum systems lies at the heart of building scalable quantum networks. Here, we report the first direct photonic coupling between a semiconductor quantum dot and a trapped ion and we demonstrate that single photons generated by a quantum dot controllably change the internal state of a Yb+ ion. We ameliorate the effect of the 60-fold mismatch of the radiative linewidths with coherent photon generation and a high-finesse fiber-based optical cavity enhancing the coupling between the single photon and the ion. The transfer of information presented here via the classical correlations between the σz projection of the quantum-dot spin and the internal state of the ion provides a promising step towards quantum-state transfer i...
© 2016 Author(s).We report on resonance fluorescence from a single quantum dot emitting at telecom w...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
Coupling individual quantum systems lies at the heart of building scalable quantum networks. Here, w...
This thesis describes the first experimentally achieved coupling of a single atomic ion to an optica...
We investigate two schemes for generating indistinguishable single photons, a key feature of quantum...
Long-range transport of quantum information across a network is most readily achieved through the us...
Long-range transport of quantum information across a network is most readily achieved through the us...
Self-assembled quantum dots can act as an interface between single spins and photons. They combine t...
The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long ...
Controlled non-local energy and coherence transfer enables light harvesting in photosynthesis and no...
Controlled non-local energy and coherence transfer enables light harvesting in photosynthesis and no...
Controlled non-local energy and coherence transfer enables light harvesting in photosynthesis and no...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
© 2016 Author(s).We report on resonance fluorescence from a single quantum dot emitting at telecom w...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
Coupling individual quantum systems lies at the heart of building scalable quantum networks. Here, w...
This thesis describes the first experimentally achieved coupling of a single atomic ion to an optica...
We investigate two schemes for generating indistinguishable single photons, a key feature of quantum...
Long-range transport of quantum information across a network is most readily achieved through the us...
Long-range transport of quantum information across a network is most readily achieved through the us...
Self-assembled quantum dots can act as an interface between single spins and photons. They combine t...
The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long ...
Controlled non-local energy and coherence transfer enables light harvesting in photosynthesis and no...
Controlled non-local energy and coherence transfer enables light harvesting in photosynthesis and no...
Controlled non-local energy and coherence transfer enables light harvesting in photosynthesis and no...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
This article was supported by the German Research Foundation (DFG) and the Open Access Publication F...
© 2016 Author(s).We report on resonance fluorescence from a single quantum dot emitting at telecom w...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...
We demonstrate that the presence of charges around a semiconductor quantum dot (QD) strongly affects...