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Intercept-Resend attack on quantum key distribution protocols with two, three and four-state systems. Comparative analysis

机译:拦截与两个,三个和四态系统的量子密钥分布协议进行攻击。对比分析

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The existing studies proved the importance of quantum key distribution protocols, unfortunately, most of them have been known only as theoretical models. Starting from the mathematical models, this study explores quantum alternatives to traditional key distribution protocols and involves software implementations of the quantum key distribution protocols with two, three and four-state systems. The paper presents the results obtained on case of the cybernetic attack simulation, type Intercept-Resend - the well known attack on quantum world, over the each protocol. Presence of the eavesdropper is determined by calculating the errors obtained at the end of transmission through quantum channel. The method Quantum Error Rate for detecting the eavesdropper can be applied to the majority key distribution systems, each system having its own acceptable error rate. Starting from the same size of input data, the paper presents an analysis of the data obtained on cybernetic attack simulations and analyzes the percentage of errors by comparison with the dimensions of the cryptographic keys obtained in the case of each protocol.
机译:现有研究证明了量子密钥分布协议的重要性,遗憾的是,其中大多数人仅作为理论模型所知。从数学模型开始,本研究探讨了传统关键分布协议的量子替代方案,并涉及具有两个,三个和四状态系统的量子密钥分布协议的软件实现。本文介绍了在每种协议上键入拦截 - 重新发送 - 读取互通 - 重新发送的结果 - 众所周知的攻击。通过计算通过量子信道结束时获得的误差来确定窃听器的存在。用于检测窃听器的方法量子误差率可以应用于大多数密钥分配系统,每个系统具有其自身可接受的错误率。从相同的输入数据开始,本文提出了对网络感染攻击模拟所获得的数据的分析,并通过与在每个协议的情况下获得的密码键的尺寸进行分析,分析错误的百分比。

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