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An improved control mode for the ping-pong protocol operation in imperfect quantum channels

机译:不完全量子信道中乒乓协议操作的一种改进控制模式

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Quantum direct communication (QDC) can bring confidentiality of sensitive information without any encryption. Aping-pong protocol, a well-known example of entanglement-based QDC, offers asymptotic security in a perfect quantum channel. However, it has been shown (Wojcik in Phys Rev Lett 90(15):157901, 2003. doi: 10.1103/PhysRevLett.90.157901) that it is not secure in the presence of losses. Moreover, legitimate parities cannot rely on dense information coding due to possible undetectable eavesdropping even in the perfect setting (Pavicic in Phys Rev A 87(4): 042326, 2013. doi: 10.1103/PhysRevA.87.042326). We have identified the source of the above-mentioned weaknesses in the incomplete check of the EPR pair coherence. We propose an improved version of the control mode, and we discuss its relation to the already-known attacks that undermine the QDC security. It follows that the new control mode detects these attacks with high probability and independently on a quantum channel type. As a result, an asymptotic security of the QDC communication can be maintained for imperfect quantum channels, also in the regime of dense information coding.
机译:量子直接通信(QDC)可以对敏感信息进行保密,而无需进行任何加密。 Aping-pong协议是基于纠缠的QDC的著名示例,它在理想的量子通道中提供渐近安全性。但是,已经证明了这一点(Wojcik在Phys Rev Lett 90(15):157901,2003. doi:10.1103 / PhysRevLett.90.157901中)存在损失时并不安全。而且,由于即使在完美的环境下,也可能由于无法检测到的窃听,合法奇偶校验不能依赖密集的信息编码(Pavicic in Phys Rev A 87(4):042326,2013. doi:10.1103 / PhysRevA.87.042326)。我们已经在对EPR对一致性的不完整检查中找到了上述弱点的根源。我们提出了控制模式的改进版本,并讨论了其与破坏QDC安全性的已知攻击的关系。由此可见,新的控制模式以高概率且独立于量子信道类型来检测这些攻击。结果,即使在密集信息编码的情况下,对于不完善的量子信道,也可以保持QDC通信的渐近安全性。

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