量子密钥分配
计算机科学
稳健性(进化)
钥匙(锁)
现场试验
同步(交流)
编码器
量子
计算机网络
计算机安全
物理
生物化学
量子力学
生物
基因
操作系统
频道(广播)
化学
农学
作者
Marco Avesani,Luca Calderaro,Giulio Foletto,Costantino Agnesi,Francesco Picciariello,Francesco B. L. Santagiustina,Alessia Scriminich,Andrea Stanco,Francesco Vedovato,Mujtaba Zahidy,Giuseppe Vallone,Paolo Villoresi
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2021-04-28
卷期号:46 (12): 2848-2848
被引量:32
摘要
Field trials are of key importance for novel technologies seeking commercialization and widespread adoption. This is also the case for quantum key distribution (QKD), which allows distant parties to distill a secret key with unconditional security. Typically, QKD demonstrations over urban infrastructures require complex stabilization and synchronization systems to maintain a low quantum bit error and high secret key rates over time. Here we present a field trial that exploits low-complexity self-stabilized hardware and a novel synchronization technique, to perform QKD over optical fibers deployed in the city center of Padua, Italy. Two techniques recently introduced by our research group are evaluated in a real-world environment: the iPOGNAC polarization encoder was used for preparation of the quantum states, while temporal synchronization was performed with the Qubit4Sync algorithm. The results here presented demonstrate the validity and robustness of our resource-effective QKD system, which can be easily and rapidly installed in an existing telecommunication infrastructure, thus representing an important step towards mature, efficient, and low-cost QKD systems.
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