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Hacking on decoy-state quantum key distribution system with partial phase randomization

机译:部分相位随机化诱骗态量子密钥分发系统的黑客行为

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Quantum key distribution (QKD) provides means for unconditional secure key transmission between two distant parties. However, in practical implementations, it suffers from quantum hacking due to device imperfections. Here we propose a hybrid measurement attack, with only linear optics, homodyne detection, and single photon detection, to the widely used vacuum + weak decoy state QKD system when the phase of source is partially randomized. Our analysis shows that, in some parameter regimes, the proposed attack would result in an entanglement breaking channel but still be able to trick the legitimate users to believe they have transmitted secure keys. That is, the eavesdropper is able to steal all the key information without discovered by the users. Thus, our proposal reveals that partial phase randomization is not sufficient to guarantee the security of phase-encoding QKD systems with weak coherent states.
机译:量子密钥分发(QKD)提供了在两个远程方之间进行无条件安全密钥传输的方法。但是,在实际的实现中,由于设备的缺陷,它遭受了量子黑客攻击。在这里,我们提出了一种混合测量攻击,仅当源相位被部分随机化时,才对广泛使用的真空+弱诱饵状态QKD系统进行线性光学,零差检测和单光子检测。我们的分析表明,在某些参数范围内,建议的攻击将导致纠缠中断通道,但仍然能够欺骗合法用户以使其认为自己已传输安全密钥。也就是说,窃听者能够窃取所有关键信息,而不会被用户发现。因此,我们的建议揭示了部分相位随机化不足以保证具有弱相干态的相位编码QKD系统的安全性。

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