We investigate quantum repeater protocols based upon atomic qubit-entanglement distribution through optical coherent-state communication. Various measurement schemes for an optical mode entangled with two spatially separated atomic qubits are considered in order to nonlocally prepare conditional two-qubit entangled states. In particular, generalized measurements for unambiguous state discrimination enable one to completely eliminate spin-flip errors in the resulting qubit states, as they would occur in a homodyne-based scheme due to the finite overlap of the optical states in phase space. As a result, by using weaker coherent states, high initial fidelities can still be achieved for larger repeater spacing, at the expense of lower entanglem...
Optical coherent states are classical light fields with high purity, and are essential carriers of i...
Sequential state discrimination is a strategy for quantum state discrimination of a sender's qua...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...
We investigate quantum repeater protocols based upon atomic qubit-entanglement distribution through ...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
We present a quantum repeater scheme based on the recently proposed qubit amplifier [N. Gisin, S. Pi...
We present a scheme of quantum repeater that uses entangled multimode coherent states which are obta...
We show how to distribute with percentage success probabilities almost perfectly entangled qubit mem...
We analyze a novel method that uses fixed, minimal physical resources to achieve generation and nest...
We analyze various prominent quantum repeater protocols in the context of long-distance quantum key ...
We report on the coherent quantum state transfer from a two-level atomic system to a single photon. ...
© 2018 American Physical Society. Quantum entanglement is an indispensable resource for many signifi...
We propose a repeat-until-success protocol to improve the performance of probabilistic quantum repea...
Optical coherent states are classical light fields with high purity, and are essential carriers of i...
Sequential state discrimination is a strategy for quantum state discrimination of a sender's qua...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...
We investigate quantum repeater protocols based upon atomic qubit-entanglement distribution through ...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
In the domain of quantum communication, one of the main challenges is the distribution of entangleme...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
We present a quantum repeater scheme based on the recently proposed qubit amplifier [N. Gisin, S. Pi...
We present a scheme of quantum repeater that uses entangled multimode coherent states which are obta...
We show how to distribute with percentage success probabilities almost perfectly entangled qubit mem...
We analyze a novel method that uses fixed, minimal physical resources to achieve generation and nest...
We analyze various prominent quantum repeater protocols in the context of long-distance quantum key ...
We report on the coherent quantum state transfer from a two-level atomic system to a single photon. ...
© 2018 American Physical Society. Quantum entanglement is an indispensable resource for many signifi...
We propose a repeat-until-success protocol to improve the performance of probabilistic quantum repea...
Optical coherent states are classical light fields with high purity, and are essential carriers of i...
Sequential state discrimination is a strategy for quantum state discrimination of a sender's qua...
We present a detailed rate analysis for a hybrid quantum repeater assuming perfect memories and usin...