Single-Shot Secure Quantum Network Coding for General Multiple Unicast Network with Free One-Way Public Communication

March 30, 2020 Β· Declared Dead Β· πŸ› IEEE Transactions on Information Theory

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Authors Go Kato, Masaki Owari, Masahito Hayashi arXiv ID 2003.13293 Category quant-ph: Quantum Computing Cross-listed cs.IT Citations 8 Venue IEEE Transactions on Information Theory Last Checked 5 months ago
Abstract
It is natural in a quantum network system that multiple users intend to send their quantum message to their respective receivers, which is called a multiple unicast quantum network. We propose a canonical method to derive a secure quantum network code over a multiple unicast quantum network from a secure classical network code. Our code correctly transmits quantum states when there is no attack. It also guarantees the secrecy of the transmitted quantum state even with the existence of an attack when the attack satisfies a certain natural condition. In our security proof, the eavesdropper is allowed to modify wiretapped information dependently on the previously wiretapped messages. Our protocol guarantees the secrecy by utilizing one-way classical information transmission (public communication) in the same direction as the quantum network although the verification of quantum information transmission requires two-way classical communication. Our secure network code can be applied to several networks including the butterfly network.
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