We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and using optimal probabilistic entanglement generation and deterministic swapping routines. The hybrid quantum repeater protocol is based on atomic qubit-entanglement distribution through optical coherent-state communication. An exact, analytical formula for the rates of entanglement generation in quantum repeaters is derived, including a study on the impacts of entanglement purification and multiplexing strategies. More specifically, we consider scenarios with as little purification as possible and we show that for sufficiently low local losses, such purifications are still more powerful than multiplexing. In a possible experimental scenario, our h...
We analyze a novel method that uses fixed, minimal physical resources to achieve generation and nest...
Distribution of high-quality entanglement over long distances is a key step for the development of a...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...
We present an encoded hybrid quantum repeater scheme using qubit-repetition and Calderbank-Shor-Stea...
We present an encoded hybrid quantum repeater scheme using qubit-repetition and Calderbank-Shor-Stea...
© 2018 American Physical Society. Quantum entanglement is an indispensable resource for many signifi...
We analyze various prominent quantum repeater protocols in the context of long-distance quantum key ...
We analyze various prominent quantum repeater protocols in the context of long-distance quantum key ...
Entanglement is an essential resource for a variety of applications, such as distributed quantum com...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
We propose a repeat-until-success protocol to improve the performance of probabilistic quantum repea...
Quantum communication enables a host of applications that cannot be achieved by classical communicat...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
Quantum communication enables a host of applications that cannot be achieved by classical communicat...
We analyze a novel method that uses fixed, minimal physical resources to achieve generation and nest...
Distribution of high-quality entanglement over long distances is a key step for the development of a...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...
We present an encoded hybrid quantum repeater scheme using qubit-repetition and Calderbank-Shor-Stea...
We present an encoded hybrid quantum repeater scheme using qubit-repetition and Calderbank-Shor-Stea...
© 2018 American Physical Society. Quantum entanglement is an indispensable resource for many signifi...
We analyze various prominent quantum repeater protocols in the context of long-distance quantum key ...
We analyze various prominent quantum repeater protocols in the context of long-distance quantum key ...
Entanglement is an essential resource for a variety of applications, such as distributed quantum com...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
We propose a repeat-until-success protocol to improve the performance of probabilistic quantum repea...
Quantum communication enables a host of applications that cannot be achieved by classical communicat...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
Quantum communication enables a host of applications that cannot be achieved by classical communicat...
We analyze a novel method that uses fixed, minimal physical resources to achieve generation and nest...
Distribution of high-quality entanglement over long distances is a key step for the development of a...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...