量子纠缠
纤维
量子
量子密钥分配
物理
量子力学
材料科学
复合材料
作者
Anouar Rahmouni,Paulina S. Kuo,Ya-Shian Li-Baboud,Ivan A. Burenkov,Yu Shi,M. V. Jabir,Nidhi Lal,Dileep V. Reddy,Mheni Merzouki,Lina Ma,Abdella Battou,Sergey V. Polyakov,Oliver Slattery,Thomas Gerrits
摘要
The development of prototype metropolitan-scale quantum networks is underway and entails transmitting quantum information via single photons through deployed optical fibers spanning several tens of kilometers. The major challenges in building metropolitan-scale quantum networks are compensation for polarization fluctuation, high-precision clock synchronization, and compensation for cumulative transmission time fluctuations. One approach addressing these challenges is to copropagate classical probe signals in the same fiber as the quantum signal. Thus, both signals experience the same conditions, and the changes of the fiber can therefore be monitored and compensated. Here, we demonstrate the distribution of polarization-entangled quantum signals copropagating with the White Rabbit precision time protocol classical signals in the same single-core fiber strand at metropolitan-scale distances. Our results demonstrate the feasibility of this quantum-classical coexistence by achieving high-fidelity entanglement distribution between nodes separated by 100 km of optical fiber. This advancement is a significant step towards the practical implementation of robust and efficient metropolitan-scale quantum networks.
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