Quantum repeaters provide an efficient solution to distribute Bell pairs over arbitrarily long distances. While scalable architectures are demanding regarding the number of qubits that need to be controlled, here we present a quantum repeater scheme aiming to extend the range of present day quantum communications that could be implemented in the near future with trapped ions in cavities. We focus on an architecture where ion-photon entangled states are created locally and subsequently processed with linear optics to create elementary links of ion-ion entangled states. These links are then used to distribute entangled pairs over long distances using successive entanglement swapping operations performed using deterministic ion-ion gates. We s...
Quantum information research is driven by the prospect of using the features of quantum physics to t...
Quantum repeaters (QRs) provide a way of enabling long distance quantum communication by establishin...
A quantum repeater node is presented based on trapped ions that act as single photon emitters, quant...
Trapped ions form an advanced technology platform for quantum information processing with long qubit...
International audienceWe analyze the performance of a quantum repeater protocol based on single trap...
We propose an approach to implement quantum repeaters for long-distance quantum communication. Our p...
We study a quantum repeater which is based on decoherence free quantum gates recently proposed by Kl...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
We present a quantum repeater scheme based on the recently proposed qubit amplifier [N. Gisin, S. Pi...
The endeavor to develop quantum networks gave rise to a rapidly developing field with far-reaching a...
Quantum information research is driven by the prospect of using the features of quantum physics to t...
Quantum devices are rapidly gaining momentum as a technology that will induce a paradigm shift in co...
Quantum information research is driven by the prospect of using the features of quantum physics to t...
Quantum repeaters (QRs) provide a way of enabling long distance quantum communication by establishin...
A quantum repeater node is presented based on trapped ions that act as single photon emitters, quant...
Trapped ions form an advanced technology platform for quantum information processing with long qubit...
International audienceWe analyze the performance of a quantum repeater protocol based on single trap...
We propose an approach to implement quantum repeaters for long-distance quantum communication. Our p...
We study a quantum repeater which is based on decoherence free quantum gates recently proposed by Kl...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
International audienceA quantum repeater node is presented based on trapped ions that act as single ...
We present a quantum repeater scheme based on the recently proposed qubit amplifier [N. Gisin, S. Pi...
The endeavor to develop quantum networks gave rise to a rapidly developing field with far-reaching a...
Quantum information research is driven by the prospect of using the features of quantum physics to t...
Quantum devices are rapidly gaining momentum as a technology that will induce a paradigm shift in co...
Quantum information research is driven by the prospect of using the features of quantum physics to t...
Quantum repeaters (QRs) provide a way of enabling long distance quantum communication by establishin...
A quantum repeater node is presented based on trapped ions that act as single photon emitters, quant...