论文标题
在跨国248 km纤维链路上的连续纠缠分布
Continuous entanglement distribution over a transnational 248 km fibre link
论文作者
论文摘要
纠缠是许多量子应用的基础。在技术上最成熟的量子密钥分布,利用纠缠光子的量子相关性,以产生可证明牢不可破的安全性的加密密钥。在这种情况下,关键的挑战是建立纠缠的不断工作,可靠的长距离分布。但是,通过卫星的连接不允许无中断操作,到目前为止,部署的纤维实现仅限于损失,几个小时的值班时间或使用可信赖的节点的限制至100公里。在这里,我们提出了奥地利和斯洛伐克之间连续工作的国际联系,直接通过部署的电信纤维直接通过248公里的部署电信纤维分发了极化的光子对。尽管损失了79个DB,但在示例性的工作时间为110小时,我们的稳定对率为9 s $^{ - 1} $。我们通过严格的时间滤波来减轻多对检测,这是通过色散的非本地补偿来实现的。完全自动化的主动极化稳定使纠缠状态的可见度总共82小时,以1.4位/s的速度产生403 kbit的量子安全密钥。我们的工作为长距离的低维护,超稳定的量子通信铺平了道路,独立于云覆盖范围和一天中的时间,从而构成了迈向量子互联网的重要一步。
Entanglement is the basis of many quantum applications. The technically most mature of them, quantum key distribution, harnesses quantum correlations of entangled photons to produce cryptographic keys of provably unbreakable security. A key challenge in this context is the establishment of continuously working, reliable long-distance distributions of entanglement. However, connections via satellites don't allow for interruption-free operation, and deployed fibre implementations have so far been limited to less than 100 km by losses, a few hours of duty time, or use trusted nodes. Here, we present a continuously working international link between Austria and Slovakia, directly distributing polarization-entangled photon pairs via 248 km of deployed telecommunication fibre. Despite 79 dB loss, we measure stable pair rates of 9 s$^{-1}$ over an exemplary operation time of 110 hours. We mitigate multi-pair detections with strict temporal filtering, enabled by nonlocal compensation of chromatic dispersion. Fully automatized active polarization stabilization keeps the entangled state's visibility at 86 % for altogether 82 hours, producing 403 kbit of quantum-secure key at a rate of 1.4 bits/s. Our work paves the way for low-maintenance, ultra-stable quantum communication over long distances, independent of cloud coverage and time of day, thus constituting an important step towards the quantum internet.