首页> 外文期刊>Physical Review X >Phase-Matching Quantum Key Distribution
【24h】

Phase-Matching Quantum Key Distribution

机译:相位匹配量子密钥分布

获取原文
           

摘要

Quantum key distribution allows remote parties to generate information-theoretic secure keys. The bottleneck throttling its real-life applications lies in the limited communication distance and key generation speed, due to the fact that the information carrier can be easily lost in the channel. For all the current implementations, the key rate is bounded by the channel transmission probability η . Rather surprisingly, by matching the phases of two coherent states and encoding the key information into the common phase, this linear key-rate constraint can be overcome—the secure key rate scales with the square root of the transmission probability O ( η ) , as proposed in twin-field quantum key distribution [M. Lucamarini et?al . Overcoming the Rate–Distance Limit of Quantum Key Distribution without Quantum Repeaters, Nature (London) 557, 400 (2018) ]. To achieve this, we develop an optical-mode-based security proof that is different from the conventional qubit-based security proofs. Furthermore, the proposed scheme is measurement device independent; i.e., it is immune to all possible detection attacks. The simulation result shows that the key rate can even exceed the transmission probability η between two communication parties. In addition, we apply phase postcompensation to devise a practical version of the scheme without phase locking, which makes the proposed scheme feasible with the current technology. This means that quantum key distribution can enjoy both sides of the world—practicality and security.
机译:Quantum密钥分发允许远程方生成信息理论上的安全键。由于信息载体可以容易地丢失在通道中,所限制其现实寿命应用的瓶颈位于有限的通信距离和关键发速。对于所有当前实现,键速率由信道传输概率η界定。相反地​​,通过匹配两个相干状态的阶段并将关键信息编码到公共相中,可以克服该线性键速率约束 - 具有传输概率O(η)的平方根的安全键速率缩放,如在双场量子密钥分布中提出[M.卢卡马里尼et?al。克服没有量子中继器,自然(伦敦)557,400(2018)的量子密钥分布的速率 - 距离限制。为实现这一目标,我们开发了一种基于光学模式的安全性证明,其与基于传统的基于Qubit的安全性证明不同。此外,所提出的方案是无关的测量装置;即,它是免疫所有可能的检测攻击。仿真结果表明,键速率甚至可以超过两个通信方之间的传输概率η。此外,我们申请阶段后补偿以设计方案的实用版本,无锁相,这使得提出的方案与当前技术可行。这意味着量子密钥分布可以享受世界实用性和安全性的两侧。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号