论文标题
资源有效的量子密钥分布:帕多瓦市中心的现场审判
Resource-effective Quantum Key Distribution: a field-trial in Padua city center
论文作者
论文摘要
对于寻求商业化和广泛采用的新技术,现场试验至关重要。量子密钥分布(QKD)当然也是这种情况,它允许遥远的各方使用无条件安全的秘密密钥提炼。通常,在城市基础设施上进行的QKD示范需要复杂的稳定和同步系统,以维持较低的量子位误差(QBER)和高秘密关键率。在这里,我们提出了一种野外试验,该试验利用了低复杂性自动硬件和一种新颖的同步技术,可以通过在意大利帕多瓦市中心部署的光纤进行QKD。特别是,我们的研究小组最近在现实世界中评估了两种技术:使用ipognac偏振编码器进行量子状态,而使用qubit4sync算法进行时间同步。这里提出的结果证明了我们资源有效的QKD系统的有效性和鲁棒性,可以轻松,快速安装在现有的电信基础架构中,从而代表了朝着成熟,高效和低成本QKD系统迈出的重要一步。
Field-trials are of key importance for novel technologies seeking commercialization and wide-spread adoption. This is certainly 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 (QBER) and high secret key rates over time. Here we present a field-trial which exploits a low-complexity self-stabilized hardware and a novel synchronization technique, to perform QKD over optical fibers deployed in the city center of Padua, Italy. In particular, two techniques recently introduced by our research group are evaluated in a real-world environment: the iPOGNAC polarization encoder was used for the preparation of the quantum states, while the temporal synchronization was performed using the Qubit4Sync algorithm. The results here presented demonstrate the validity and robustness of our resource-effective QKD system, that can be easily and rapidly installed in an existing telecommunication infrastructure, thus representing an important step towards mature, efficient and low-cost QKD systems.