论文标题
实验性安全量子键分布在偏振依赖性损失的情况下
Experimental secure quantum key distribution in presence of polarization-dependent loss
论文作者
论文摘要
量子密钥分布(QKD)在理论上是使用量子力学原理的;因此,QKD是安全通信未来的有前途的解决方案。尽管已经报道了QKD的几个实验证明,但在关键估计估计中,它们尚未考虑状态制备中的极化依赖性损失。在这项研究中,我们实验表征了现实的状态预先制定设备中的极化依赖性损失,并验证了基于纤维和硅的极化调节剂中存在相当大的PDL。因此,由于密钥速率高估,此类QKD系统的安全性受到了损害。此外,我们报告了一个诱饵状态BB84 QKD实验,考虑到依赖极化损失。最后,通过应用最近提出的安全证明,我们实现了严格的有限键安全性,最多可以限制75公里的光纤链接。这项研究认为比以前的大多数实验更现实的源缺陷。因此,这对于具有不完善的实际设备的安全QKD至关重要。
Quantum key distribution (QKD) is theoretically secure using the principle of quantum mechanics; therefore, QKD is a promising solution for the future of secure communication. Although several experimental demonstrations of QKD have been reported, they have not considered the polarization-dependent loss in state preparation in the key-rate estimation. In this study, we experimentally characterized polarization-dependent loss in realistic state-preparation devices and verified that a considerable PDL exists in fiber- and silicon-based polarization modulators. Hence, the security of such QKD systems is compromised because of the secure key rate overestimation. Furthermore, we report a decoy-state BB84 QKD experiment considering polarization-dependent loss. Finally, we achieved rigorous finite-key security bound over up to 75 km fiber links by applying a recently proposed security proof. This study considers more realistic source flaws than most previous experiments; thus, it is crucial toward a secure QKD with imperfect practical devices.