论文标题

双场量子钥匙分布与部分相位后

Twin-field quantum key distribution with partial phase postselection

论文作者

Zhou, Yao, Yin, Zhen-Qiang, Wang, Rui-Qiang, Wang, Shuang, Chen, Wei, Guo, Guang-Can, Han, Zheng-Fu

论文摘要

Quantum密钥分布(QKD)允许两个远程各方共享信息从理论上安全的密钥。近年来,已经开发了一个名为Twin-Field(TF)QKD的革命性突破,以克服线性钥匙率约束,并大大增加了可实现的距离。阶段随机化和随后的选择后在其安全性证明中起重要作用。后来,提出了No阶段的TF-QKD,并成为流行的变体,因为取消相分选择会导致更高的关键率。但是,与原始距离相比,可实现的距离降低了。在这里,我们提出了一个具有部分阶段后选择后的TF-QKD协议。也就是说,其代码模式仍然没有全局阶段随机分配和选择后,以确保仍然存在高关键速率的优势。另一方面,在诱饵模式下引入了阶段后选择以提高性能。应用运营商的主导条件,我们证明了在有限键案件中提出的协议的普遍安全性,并且数值模拟证实了其在关键率和可实现距离方面的潜在优势。

Quantum key distribution (QKD) allows two remote parties to share information-theoretically secure keys. In recent years, a revolutionary breakthrough called twin-field (TF) QKD has been developed to overcome the linear key-rate constraint and greatly increases the achievable distance. Phase-randomization and subsequent postselection play important roles in its security proof. Later, no-phase-postselection TF-QKD was proposed and became a popular variant, since the removal of phase postselection leads to a higher key rate. However, the achievable distance is decreased compared to the original one. Here, we propose a TF-QKD protocol with partial phase postselection. Namely, its code mode is still free from global phase randomization and postselection to make sure the advantage of the high key rate remains. On other hand, phase postselection is introduced in the decoy mode to improve the performance. Applying an operator dominance condition, we prove universal security of the proposed protocol in the finite-key case under coherent attacks, and numerical simulations confirm its potential advantages in terms of key rate and achievable distance.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源