Bounds for multi-end communication over quantum networks
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Summary
This work bound the optimal rates for transmitting quantum information, distributing entanglement, or generating secret keys in quantum networks connected by arbitrary quantum channels, which cannot be surpassed by the most general adaptive protocols of quantum network communication.
- Type
- article
- Published
- 2019-05-29
- Cited by
- 58
- References
- 61
- Access
- Open access
- OpenAlex
- https://openalex.org/W2946840574
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:170078978
Keywords
Unicast, Multicast, Computer science, Communication source, Quantum network
References
- Information Theory: 1948-1998 - Guest Editorial
- Quantum Systems, Channels, Information: A Mathematical Introduction
- Mathematical foundations of network analysis
- Advances in quantum teleportation
- I and i
- Gaussian quantum information
- Quantum Computation and Quantum Information
- Network Flows: Theory, Algorithms, and Applications
- Capacity of the noisy quantum channel
- Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels.
- Quantum data processing and error correction.
- Quantum repeaters based on entanglement purification
- Secure key from bound entanglement.
- Entanglement measures and purification procedures
- Entanglement of the Antisymmetric State
- Reverse coherent information.
- Quantum cryptography based on Bell's theorem.
- Universal teleportation with a twist
- Quantum Repeaters: The Role of Imperfect Local Operations in Quantum Communication
- The quantum internet
Cited by
- Correlation Measure Equivalence in Dynamic Causal Structures
- Linear programs for entanglement and key distribution in the quantum internet
- Entanglement concentration service for the quantum Internet
- Advances in quantum cryptography
- Practical figures of merit and thresholds for entanglement distribution in quantum networks
- Exploring the Limitations of Quantum Networking through Butterfly‐Based Networks
- Characterising port-based teleportation as universal simulator of qubit channels
- Optimizing High-Efficiency Quantum Memory with Quantum Machine Learning for Near-Term Quantum Devices
- Enhanced energy-constrained quantum communication over bosonic Gaussian channels
- Theory of Noise-Scaled Stability Bounds and Entanglement Rate Maximization in the Quantum Internet
- Order statistics and random matrix theory of multicarrier continuous‐variable quantum key distribution
- High-retrieval efficiency quantum memory for the quantum internet
- Entanglement accessibility measures for the quantum Internet
- Quantum State Optimization and Computational Pathway Evaluation for Gate-Model Quantum Computers
- Objective function maximization by machine learning for gate-model quantum computers
- Entanglement Distribution in a Quantum Network: A Multicommodity Flow-Based Approach
- General upper bound for conferencing keys in arbitrary quantum networks
- Policies for elementary link generation in quantum networks
- Unsupervised Quantum Gate Control for Gate-Model Quantum Computers
- Circuit Depth Reduction for Gate-Model Quantum Computers
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