Opt Lett. 2014 Feb 15;39(4):880-3. doi: 10.1364/OL.39.000880.
The measurement-device-independent quantum key distribution (MDI-QKD) protocol has been proposed for the purpose of removing the detector side channel attacks. Due to the multiphoton events of coherent states sources, real-life implementations of MDI-QKD protocol must employ decoy states to beat the photon-number-splitting attack. Decoy states for MDI-QKD based on the weak coherent states (WCSs) have been studied recently. In this Letter, we propose to perform MDI-QKD protocol with modified coherent states (MCS) sources. We simulate the performance of MDI-QKD with the decoy states based on MCS sources. And our simulation indicates that both the secure-key rate and transmission distance can be improved evidently with MCS sources. The physics behind this improvement is that the probability of multiphoton events of the MCS is lower than that of WCSs while at the same time the probability of single-photon is higher.
测量设备无关量子密钥分发(MDI-QKD)协议被提出用于消除探测器侧信道攻击。由于相干态光源的多光子事件,实际的 MDI-QKD 协议实现必须采用诱骗态来击败光子数分束攻击。最近研究了基于弱相干态(WCS)的 MDI-QKD 的诱骗态。在这封信中,我们提出了使用改进的相干态(MCS)源执行 MDI-QKD 协议。我们模拟了基于 MCS 源的诱骗态的 MDI-QKD 性能。我们的模拟表明,使用 MCS 源可以显著提高安全密钥率和传输距离。这种改进的背后的物理原理是,MCS 的多光子事件的概率低于 WCSs,同时单光子的概率更高。