Zhang Sheng, Shi Jixuan, Liang Yibo, Sun Yuedong, Wu Yukai, Duan Luming, Pu Yunfei
Center for Quantum Information, IIIS, Tsinghua University, Beijing, 100084, PR China.
Hefei National Laboratory, Hefei, 230088, PR China.
Nat Commun. 2024 Nov 27;15(1):10306. doi: 10.1038/s41467-024-54691-3.
Distributing quantum entanglement between distant parties is a significant but difficult task in quantum information science, as it can enable numerous applications but suffers from exponential decay in the quantum channel. Quantum repeaters are one of the most promising approaches towards this goal. In a quantum repeater protocol, it is essential that the entanglement generation speed within each elementary link is faster than the memory decoherence rate, and this stringent requirement has not been implemented over a fiber of metropolitan scale so far. As a step towards this challenging goal, in this work we experimentally realize multiplexing-enhanced generation of heralded atom-photon quantum correlation over a 12 km fiber. We successively generate 280 pairs of atom-photon quantum correlations with a train of photonic time-bin pulses filling the long fiber, and read out the excited memory modes on demand with either fixed or variable storage time after successful heralding. With the multiplexing enhancement, the heralding rate of atom-photon correlation can reach 1.95 kHz, and the ratio between the quantum correlation generation rate to memory decoherence rate can be improved to 0.46 for a fiber length of 12 km. This work therefore constitutes an important step towards the realization of a large-scale quantum repeater network.
在量子信息科学中,在相距遥远的各方之间分配量子纠缠是一项意义重大但颇具难度的任务,因为它能促成众多应用,却会在量子信道中遭受指数衰减。量子中继器是实现这一目标最具前景的方法之一。在量子中继器协议中,每个基本链路内的纠缠生成速度必须快于存储器退相干速率,而这一严苛要求迄今尚未在城域规模的光纤上得以实现。作为朝着这一具有挑战性目标迈进的一步,在本工作中,我们通过实验实现了在12公里光纤上复用增强型的预示原子 - 光子量子关联生成。我们利用一列填充长光纤的光子时间槽脉冲相继生成了280对原子 - 光子量子关联,并在成功预示后,根据需要以固定或可变存储时间读出激发的存储器模式。借助复用增强,原子 - 光子关联的预示速率可达1.95千赫兹,对于12公里长的光纤,量子关联生成速率与存储器退相干速率之比可提高到0.46。因此,本工作是朝着实现大规模量子中继器网络迈出的重要一步。