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首页> 外文期刊>Journal of Mathematical Physics >Classical-quantum arbitrarily varying wiretap channel: Secret message transmission under jamming attacks
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Classical-quantum arbitrarily varying wiretap channel: Secret message transmission under jamming attacks

机译:古典量子任意改变丝网通道:干扰攻击下的秘密消息传输

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摘要

We analyze arbitrarily varying classical-quantum wiretap channels. These channels are subject to two attacks at the same time: one passive (eavesdropping) and one active (jamming). We elaborate on our previous studies [H. Boche et al., Quantum Inf. Process. 15(11), 4853-4895 (2016) and H. Boche et al., Quantum Inf. Process. 16(1), 1-48 (2016)] by introducing a reduced class of allowable codes that fulfills a more stringent secrecy requirement than earlier definitions. In addition, we prove that non-symmetrizability of the legal link is sufficient for equality of the deterministic and the common randomness assisted secrecy capacities. Finally, we focus on analytic properties of both secrecy capacities: We completely characterize their discontinuity points and their super-activation properties. Published by AIP Publishing.
机译:我们分析任意改变的经典量子丝网通道。 这些频道同时受到两次攻击:一个被动(窃听)和一个活跃(卡住)。 我们详细说明了我们以前的研究[H. Boche等人。,量子米。 过程。 15(11),4853-4895(2016)和H. Boche等人,量子INF。 过程。 16(1),1-48(2016)]通过引入减少允许的允许代码,该代码符合比前方定义更严格的保密要求。 此外,我们证明了法律链接的非对称性足以满足确定性的平等和常见的随机性辅助保密能力。 最后,我们专注于保密能力的分析性质:我们完全表征了它们的不连续点及其超级激活特性。 通过AIP发布发布。

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