© 2018 American Physical Society. Quantum entanglement is an indispensable resource for many significant quantum information processing tasks. However, in practice, it is difficult to distribute quantum entanglement over a long distance, due to the absorption and noise in quantum channels. A solution to this challenge is a quantum repeater, which can extend the distance of entanglement distribution. In this scheme, the time consumption of classical communication and local operations takes an important place with respect to time efficiency. Motivated by this observation, we consider a basic quantum repeater scheme that focuses on not only the optimal rate of entanglement concentration but also the complexity of local operations and classical...
We propose an approach to implement quantum repeaters for long-distance quantum communication. Our p...
In this work we consider the role of entanglement assistance in quantum communication protocols, foc...
We propose a repeat-until-success protocol to improve the performance of probabilistic quantum repea...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...
Quantum communication enables a host of applications that cannot be achieved by classical communicat...
Quantum communication enables a host of applications that cannot be achieved by classical communicat...
Quantum communication enables the implementation of tasks that are unachievable with classical resou...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
Entanglement is an essential resource for a variety of applications, such as distributed quantum com...
International audienceEntangled coherent states can be prepared remotely by subtracting non-locally ...
We study the limits of bipartite entanglement distribution using a chain of quantum repeaters that h...
The ability to distribute high-quality entanglement between remote parties is a necessary primitive ...
We investigate the influence of memory errors in the quantum repeater scheme for long-range quantum ...
Many applications of quantum communication require a high amount of entanglement between the states ...
We propose an approach to implement quantum repeaters for long-distance quantum communication. Our p...
In this work we consider the role of entanglement assistance in quantum communication protocols, foc...
We propose a repeat-until-success protocol to improve the performance of probabilistic quantum repea...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...
Quantum communication enables a host of applications that cannot be achieved by classical communicat...
Quantum communication enables a host of applications that cannot be achieved by classical communicat...
Quantum communication enables the implementation of tasks that are unachievable with classical resou...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
Entanglement is an essential resource for a variety of applications, such as distributed quantum com...
International audienceEntangled coherent states can be prepared remotely by subtracting non-locally ...
We study the limits of bipartite entanglement distribution using a chain of quantum repeaters that h...
The ability to distribute high-quality entanglement between remote parties is a necessary primitive ...
We investigate the influence of memory errors in the quantum repeater scheme for long-range quantum ...
Many applications of quantum communication require a high amount of entanglement between the states ...
We propose an approach to implement quantum repeaters for long-distance quantum communication. Our p...
In this work we consider the role of entanglement assistance in quantum communication protocols, foc...
We propose a repeat-until-success protocol to improve the performance of probabilistic quantum repea...