物理
量子纠缠
量子网络
光子
量子密钥分配
节点(物理)
量子信息科学
量子力学
量子传感器
量子信道
量子隐形传态
量子位元
实现(概率)
量子
振幅阻尼通道
量子光学
传输(电信)
量子信息
光子纠缠
自发参量下转换
量子技术
量子态
拓扑(电路)
分布(数学)
原子物理学
量子计算机
激发
高保真
量子容量
作者
Tian-Yu Wang,Ren-Hui Chen,Yan Li,Ze-Hao Shen,Xiao-Song Fan,Zheng-Bang Ju,Tian-Ci Tang,Xia-Wei Li,Jing-Yuan Peng,Zhi‐Yuan Zhou,Wei Zhang,Guang‐Can Guo,Bao‐Sen Shi
摘要
Constructing a quantum memory node with the ability of long-distance atom-photon distribution is the essential task for future quantum networks, enabling distributed quantum computing, quantum cryptography, and remote sensing. Here we report the demonstration of a quantum-network node with a simple cavity-free cold atomic ensemble. This node gives an initial retrieval efficiency of approximately 55% and memory lifetime of 160 μs for atomic qubits. With the aid of a high-efficiency and polarization-independent quantum frequency conversion (QFC) module, the generated entangled photon in the node at 780-nm wavelength is converted to telecom S band at 1522 nm, enabling atom-photon distribution over long distance. We observe an entanglement fidelity between the atoms and telecom photon exceeding 80% after photon transmission over 20-km fiber with an end excitation probability of 0.2% and repetition of 1.7 kHz, the remaining infidelity being dominated by atomic decoherence. The low-noise QFC with an external efficiency up to 48.5% gives a signal-to-noise ratio of 6.9 for transmitted photons with fiber length up to 100 km, laying the cornerstone for entanglement distribution at a hundred-km level. This result provides a new platform toward the realization of a long-distance quantum network.
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