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Classical-quantum arbitrarily varying wiretap channel: Secret message transmission under jamming attacks.

, , , and . ISIT, page 1983-1987. IEEE, (2017)

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Message Transmission over Classical Quantum Channels with a Jammer with Side Information, Correlation as Resource and Common Randomness Generating., , and . ISIT, page 1722-1726. IEEE, (2019)Message Transmission Over Classical Quantum Channels With a Jammer With Side Information: Message Transmission Capacity and Resources., , and . IEEE Trans. Inf. Theory, 65 (5): 2922-2943 (2019)Semantic Security for Quantum Wiretap Channels., , , , and . ISIT, page 1990-1995. IEEE, (2020)Classical-Quantum Arbitrarily Varying Wiretap Channel., and . Information Theory, Combinatorics, and Search Theory, volume 7777 of Lecture Notes in Computer Science, page 234-246. Springer, (2013)Detectability of Denial-of-Service Attacks on Arbitrarily Varying Classical-Quantum Channels., , , and . ISIT, page 912-917. IEEE, (2021)Mosaics of Combinatorial Designs for Semantic Security on Quantum Wiretap Channels., , and . ISIT, page 856-861. IEEE, (2022)Classical-Quantum Arbitrarily Varying Wiretap Channel, and . CoRR, (2012)Capacities of classical compound quantum wiretap and classical quantum compound wiretap channels., , and . ISIT, page 726-730. IEEE, (2012)Secret Message Transmission over Quantum Channels under Adversarial Quantum Noise: Secrecy Capacity and Super-activations., , , and . ITW, page 1-5. IEEE, (2018)Quantum Wiretap Channel Coding Assisted by Noisy Correlation., and . CoRR, (2024)