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Distributions Attaining Secret Key at a Rate of the Conditional Mutual Information

机译:以条件互信息的速率获得秘密密钥的分布

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In this paper we consider the problem of extracting secret key from an eavesdropped source p XYZ at a rate given by the conditional mutual information. We investigate this question under three different scenarios: (i) Alice (X) and Bob (Y) are unable to communicate but share common randomness with the eavesdropper Eve (Z), (ii) Alice and Bob are allowed one-way public communication, and (iii) Alice and Bob are allowed two-way public communication. Distributions having a key rate of the conditional mutual information are precisely those in which a "helping" Eve offers Alice and Bob no greater advantage for obtaining secret key than a fully adversarial one. For each of the above scenarios, strong necessary conditions are derived on the structure of distributions attaining a secret key rate of I(X : Y|Z). In obtaining our results, we completely solve the problem of secret key distillation under scenario (i) and identify H(S|Z) to be the optimal key rate using shared randomness, where S is the Gacs-Korner Common Information. We thus provide an operational interpretation of the conditional Gacs-Korner Common Information. Additionally, we introduce simple example distributions in which the rate I(X : Y|Z) is achievable if and only if two-way communication is allowed.
机译:在本文中,我们考虑以条件相互信息给出的速率从窃听源P XYZ中提取密钥的问题。我们在三种不同的场景下调查这个问题:(i)Alice(x)和鲍勃(y)无法沟通,但与窃听者Eve(Z)共享常见的随机性,(ii)Alice和Bob被允许单向公共交流(III)Alice和Bob允许双向公共交流。具有条件相互信息的密钥率的分布恰恰是那些“帮助”eve提供Alice和Bob的那些,并且鲍勃没有比完全对抗的钥匙获得秘密钥匙的更大的优势。对于上述每个场景,强大的必要条件是在获得I(X:Y | Z)的秘密密钥率的分布结构上。在获取我们的结果时,我们完全解决了场景(i)下秘密密钥蒸馏的问题,并将H(s | z)识别使用共享随机性来成为最佳键速率,其中S是GACS-Korner公共信息。因此,我们提供了条件GACS-Korner常见信息的操作解释。此外,我们介绍了简单的示例分布,其中速率i(x:y | z)是可实现的,只有允许双向通信。

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