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Defense frontier analysis of quantum cryptographic systems

机译:量子密码系统的防御前沿分析

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When a quantum cryptographic system operates in the presence of background noise, security of the key can be recovered by a procedure called key distillation. A key-distillation scheme effective against so-called individual (bitwise-independent) eavesdropping attacks involves sacrifice of some of the data through privacy amplification. We derive the amount of data sacrifice sufficient to defend against individual eavesdropping attacks in both BB84 and B92 protocols and show in what sense the communication becomes secure as a result. We also compare the secrecy capacity of various quantum cryptosystems, taking into account data sacrifice during key distillation, and conclude that the BB84 protocol may offer better performance characteristics than the B92. (C) 1998 Optical Society of America. [References: 17]
机译:当量子密码系统在存在背景噪声的情况下运行时,可以通过称为密钥蒸馏的过程来恢复密钥的安全性。有效防止所谓的个别(按位独立)窃听攻击的密钥提取方案涉及通过隐私放大来牺牲某些数据。我们得出了足以抵御BB84和B92协议中的个别窃听攻击的数据牺牲量,并显示了通信在何种意义上因此变得安全。我们还比较了各种量子密码系统的保密能力,并考虑了密钥蒸馏过程中的数据牺牲,并得出结论,BB84协议可能提供比B92更好的性能特征。 (C)1998年美国眼镜学会。 [参考:17]

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