The optimal performance of a communication network is limited not only by the quality of point-to-point channels, but by the efficacy of its constituent technologies. Understanding the limits of quantum networks requires an understanding of both the ultimate capacities of quantum channels and the efficiency of imperfect quantum repeaters. In this work, using a recently developed node-splitting technique which introduces internal losses and noise into repeater devices, we present achievable end-to-end rates for noisy-repeater quantum networks. These are obtained by extending the coherent and reverse coherent information (single channel capacity lower bounds) into end-to-end capacity lower bounds, both in the context of single-path and multi-...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
To date, research on entangled quantum networks has primarily focused on an abstract model consistin...
AbstractThe past decade has seen tremendous progress in experimentally realizing the building blocks...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
The derivation of ultimate limits to communication over certain quantum repeater networks have provi...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
The derivation of ultimate limits to communication over certain quantum repeater networks have provi...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
When built, quantum repeater networks will require classical network protocols to control the quantu...
Quantum and private communications are affected by a fundamental limitation which severely restricts...
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 ...
Despite the tremendous progress of quantum cryptography, efficient quantum communication over long d...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
To date, research on entangled quantum networks has primarily focused on an abstract model consistin...
AbstractThe past decade has seen tremendous progress in experimentally realizing the building blocks...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
The optimal performance of a communication network is limited not only by the quality of point-to-po...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
The derivation of ultimate limits to communication over certain quantum repeater networks have provi...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
The derivation of ultimate limits to communication over certain quantum repeater networks have provi...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
When built, quantum repeater networks will require classical network protocols to control the quantu...
Quantum and private communications are affected by a fundamental limitation which severely restricts...
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 ...
Despite the tremendous progress of quantum cryptography, efficient quantum communication over long d...
Quantum communications promises reliable transmission of quantum information, efficient distribution...
To date, research on entangled quantum networks has primarily focused on an abstract model consistin...
AbstractThe past decade has seen tremendous progress in experimentally realizing the building blocks...