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Optimal alphabets for noise-resistant quantum cryptography

机译:抗噪声量子密码术的最佳字母表

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Possibilities of improving critical error rate of quantum key distribution (QKD) protocols for different strategies of eavesdropping are investigated. QKD-protocols with discrete alphabets, letters of which form regular polyhedrons on the Bloch sphere (tetrahedron, octahedron, cube, icosahedron, and dodecahedron, which have 4, 6, 8, 12, and 20 vertexes respectively) and QKD-protocol with continuous alphabet, which corresponds to the limiting case of a polyhedron with infinitive number of vortexes are considered. Stability of such QKD-protocols to the noise in a quantum channel, which is due to the Eve's interference that apply either intercept-receipt or optimal eavesdropping strategy at the individual attacks, is studied in detail. It is shown that in case of optimal eavesdropping strategy, after bases reconciliation, the QKD-protocol with continuous alphabet surpasses all other protocols in terms of noise-resistance. Without basis reconciliation the highest critical error rate have the protocol with tetrahedron-type alphabet.
机译:调查了提高窃听的不同策略的量子密钥分布(QKD)协议的关键误差率的可能性。具有离散字母的QKD协议,其中字母在Bloch球体上形成常规多面体(四面体,八面体,立方体,icosaheDron和十二锭,其中分别具有4,6,8,12和20个顶点)和QKD协议的连续对应于具有不一数量涡旋的多面体的限制情况的字母表。这些QKD协议对量子信道中的噪声的稳定性,这是由于EVE在各个攻击处应用截取收据或最佳窃听策略的eve的干扰。结果表明,在最佳窃听策略的情况下,在基于对帐之后,具有连续字母表的QKD协议在噪声电阻方面超越了所有其他协议。没有基础对帐,最高的临界错误率具有具有Tetrahedron型字母的协议。

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