不同且独立的原子量子节点发射的单光子的近乎无差别性

Félix Hoffet, Jan Lowinski, Lukas Heller, Auxiliadora Padrón-Brito, Hugues de Riedmatten
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引用次数: 0

摘要

从独立节点生成无差别光子是量子网络发展面临的一个重要挑战。在这项工作中,我们演示了从两个不同的原子量子节点生成高度无差别的单光子。其中一个节点基于完全封锁的冷雷德堡集合,按需产生单光子。另一个节点是基于 Duan-Lukin-Cirac-Zoller 量子存储器的量子中继器节点,在可控的存储时间后发射预示单光子,用于同步两个光源。我们证明,在包含 90% 光子的时间窗口中,不可区分度为 94.6±5.2%。这一进步为量子中继器和处理节点的互联开辟了新的可能性,在不牺牲效率的情况下实现了高保真贝尔态测量。
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Near-Unity Indistinguishability of Single Photons Emitted from Dissimilar and Independent Atomic Quantum Nodes
Generating indistinguishable photons from independent nodes is an important challenge for the development of quantum networks. In this work, we demonstrate the generation of highly indistinguishable single photons from two dissimilar atomic quantum nodes. One node is based on a fully blockaded cold Rydberg ensemble and generates on-demand single photons. The other node is a quantum repeater node based on a Duan-Lukin-Cirac-Zoller quantum memory and emits heralded single photons after a controllable memory time that is used to synchronize the two sources. We demonstrate an indistinguishability of 94.6±5.2% for a temporal window including 90% of the photons. This advancement opens new possibilities for interconnecting quantum repeater and processing nodes with high-fidelity Bell state measurement without sacrificing its efficiency.
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