Quantum communications promises reliable transmission of quantum information, efficient distribution of entanglement and generation of completely secure keys. For all these tasks, we need to determine the optimal point-to-point rates that are achievable by two remote parties at the ends of a quantum channel, without restrictions on their local operations and classical communication, which can be unlimited and two-way. These two-way assisted capacities represent the ultimate rates that are reachable without quantum repeaters. Here, by constructing an upper bound based on the relative entropy of entanglement and devising a dimension-independent technique dubbed ‘teleportation stretching’, we establish these capacities for many fundamental cha...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2018 IEEE. We explore the classical communication over quantum channels with one sender and two re...
© 2018 IEEE. We aim to study the optimal rates of transmission of public and private classical infor...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
We consider quantum key distribution (QKD) and entanglement distribution using a single-sender multi...
One of the most sought-after goals in experimental quantum communication is the implementation of a ...
One of the most sought-after goals in experimental quantum communication is the implementation of a ...
We consider quantum key distribution (QKD) and entanglement distribution using a single-sender multi...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
The quantum capacity of a memoryless channel determines the maximal rate at which we can communicate...
The derivation of ultimate limits to communication over certain quantum repeater networks have provi...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2018 IEEE. We explore the classical communication over quantum channels with one sender and two re...
© 2018 IEEE. We aim to study the optimal rates of transmission of public and private classical infor...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
We consider quantum key distribution (QKD) and entanglement distribution using a single-sender multi...
One of the most sought-after goals in experimental quantum communication is the implementation of a ...
One of the most sought-after goals in experimental quantum communication is the implementation of a ...
We consider quantum key distribution (QKD) and entanglement distribution using a single-sender multi...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
The quantum capacity of a memoryless channel determines the maximal rate at which we can communicate...
The derivation of ultimate limits to communication over certain quantum repeater networks have provi...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2018 IEEE. We explore the classical communication over quantum channels with one sender and two re...
© 2018 IEEE. We aim to study the optimal rates of transmission of public and private classical infor...