量子密钥分配
可重构性
计算机科学
可扩展性
钥匙(锁)
量子纠缠
探测器
量子网络
编码(内存)
分布式计算
量子
量子信道
量子信息
量子计算机
拓扑(电路)
巨量平行
量子密码学
密钥生成
计算机网络
随机数生成
连贯性(哲学赌博策略)
密码学
网络拓扑
量子传感器
量子技术
量子信息科学
作者
Anahita Khodadad Kashi,Michael Kues
标识
DOI:10.1038/s41377-024-01696-8
摘要
Abstract Large-scale quantum networks require dynamic and resource-efficient solutions to reduce system complexity with maintained security and performance to support growing number of users over large distances. Current encoding schemes including time-bin, polarization, and orbital angular momentum, suffer from the lack of reconfigurability and thus scalability issues. Here, we demonstrate the first-time implementation of frequency-bin-encoded entanglement-based quantum key distribution and a reconfigurable distribution of entanglement using frequency-bin encoding. Specifically, we demonstrate a novel scalable frequency-bin basis analyzer module that allows for a passive random basis selection as a crucial step in quantum protocols, and importantly equips each user with a single detector rather than four detectors. This minimizes massively the resource overhead, reduces the dark count contribution, vulnerability to detector side-channel attacks, and the detector imbalance, hence providing an enhanced security. Our approach offers an adaptive frequency-multiplexing capability to increase the number of channels without hardware overhead, enabling increased secret key rate and reconfigurable multi-user operations. In perspective, our approach enables dynamic resource-minimized quantum key distribution among multiple users across diverse network topologies, and facilitates scalability to large-scale quantum networks.
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