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◆ Physical review letters2026-08-14

High-Performance Quantum Memory for Quantum Interconnects.

Hao-Xuan Luo, Chang Li, Jia-Ling Ren, Yuan Yuan, Yong-Li Wen, Jian-Feng Li, Yun-Fei Wang, Shan-Chao Zhang, Hui Yan, Shi-Liang Zhu

原始摘要(英文原文)· Original abstract
Single photons are the flying qubits of choice for distributing entanglement in a quantum internet. Quantum memories embedded in quantum repeaters are crucial to overcome transmission loss and enhance the rate of quantum communication. A multimode memory can further boost the channel capacity. However, benchmarking and building a practical quantum memory that simultaneously optimizes multiple performance metrics poses two key challenges. Here, we introduce quantum interconnect rate to comprehensively quantify quantum memories, and further demonstrate a high-performance quantum memory that simultaneously integrates three essential criteria at once: large multimode capacity, high efficiency, and high fidelity. Operating on 11-dimensional spatial modes, our memory achieves a uniform efficiency exceeding 80% and qubit storage fidelities above 99%, enabling the efficient storage of high-dimensional qudits. Based on these capabilities, we estimate a distribution of 3.56±0.16  bits of quantum information over a 1000-km repeater link in one minute, highlighting a practical pathway toward scalable quantum interconnects and quantum networks.
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High-Performance Quantum Memory for Quantum Interconnects. — 科研速览 Science Skim