Storage of multiple single-photon pulses emitted from a quantum dot in a solid-state quantum memory

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Abstract

Quantum repeaters are critical components for distributing entanglement over long distances in presence of unavoidable optical losses during transmission. Stimulated by the Duan-Lukin-Cirac-Zoller protocol, many improved quantum repeater protocols based on quantum memories have been proposed, which commonly focus on the entanglement-distribution rate. Among these protocols, the elimination of multiple photons (or multiple photon-pairs) and the use of multimode quantum memory are demonstrated to have the ability to greatly improve the entanglement-distribution rate. Here, we demonstrate the storage of deterministic single photons emitted from a quantum dot in a polarization-maintaining solid-state quantum memory; in addition, multi-temporal-mode memory with 1, 20 and 100 narrow single-photon pulses is also demonstrated. Multi-photons are eliminated, and only one photon at most is contained in each pulse. Moreover, the solid-state properties of both sub-systems make this configuration more stable and easier to be scalable. Our work will be helpful in the construction of efficient quantum repeaters based on all-solid-state devices.

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Tang, J. S., Zhou, Z. Q., Wang, Y. T., Li, Y. L., Liu, X., Hua, Y. L., … Guo, G. C. (2015). Storage of multiple single-photon pulses emitted from a quantum dot in a solid-state quantum memory. Nature Communications , 6. https://doi.org/10.1038/ncomms9652

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