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Secret keys agreement in communication networks with quantum key distribution and trusted nodes

机译:具有量子密钥分布和可信节点的通信网络中的密钥协议

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摘要

Basic configuration in quantum cryptography is a point-to-point quantum key distribution. In networks with quantum key distribution, the keys received on different network segments are different. For information encryption between arbitrary network nodes it is necessary to have agreement of the keys distributed in different segments of network through a public classical communication channel. The secrecy criterion for keys independently distributed in different network segments is formulated in terms of the trace distance. These are the so-called e-secret keys. The paper deals with the issue of the secrecy of the agreed keys. We propose the method of secret keys agreement in which the agreement of two epsilon(1), epsilon(2)-secret keys distributed in different segments leads to a common (epsilon(1) + epsilon(2))-secret key. It is shown that in order to agreed common key will be epsilon-secret, it is sufficient that the keys on the individual segments are epsilon/2-secret.
机译:量子加密中的基本配置是点对点量子密钥分布。 在具有量子密钥分布的网络中,在不同的网络段上接收的键不同。 对于任意网络节点之间的信息加密,必须通过公共经典通信信道与网络不同段中分布的密钥同意。 在跟踪距离方面配制在不同网段中独立分布的密钥的保密标准。 这些是所谓的电子秘密密钥。 本文涉及商定钥匙的保密问题。 我们提出了秘密键协议的方法,其中两种epsilon(1),ε-分布在不同段中的ε-分泌键的协议导致常见的(ε(1)+ epsilon(2)) - 秘密键。 结果表明,为了同意共同的关键将是epsilon-securit,所以各个细分的钥匙是epsilon / 2秘密的钥匙就足够了。

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