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A theoretical and experimental test on the security of quantum cryptography key distribution Ekert's protocol based on Wigner's inequality

机译:基于Wigner不等式的量子加密密钥分布Ekert协议的安全性与实验测试

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In this paper we prove both theoretically and experimentally the insecurity of the Ekert's protocol for quantum-key distribution when based on the Wigner inequality when entangled photon pairs are used as source. The security proof of the Ekert's protocol based on Wigner's inequality consists in verifying the violation of W ≥0 (which corresponds to local-realistic theories). We highlight that a violation of the Wigner's inequality occurs when Eve controls the two quantum channels. We give the theoretical motivation for this result and we perform an experiment proving this weakness, by realizing the condition of Eve gaining total control of the source of photon pairs. In addition we calculate the modified version of this inequality which guarantees safe quantum-key distribution, thus proving it experimentally.
机译:在本文中,我们在理论上证明了EKERT的等级的不安全的量子关键分布,因为当使用缠绕的光子对时,当使用时的Phigner不等式作为源。基于Wigner的不等式的EKET的协议的安全证明包括验证违反W≥0的行为(对应于本地 - 现实理论)。我们强调,当夏娃控制两个量子通道时,会突出违反Wigner的不平等。我们给出了这种结果的理论动机,我们通过实现了前夕的总体控制来证明了这种弱点的实验。此外,我们计算了这种不等式的改进版本,保证了安全量子密钥分布,从而实验证明它。

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