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- W4384698902 abstract "Efficient synchronization of single photons that are compatible with narrowband atomic transitions is an outstanding challenge, which could prove essential for photonic quantum information processing. Here we report on the synchronization of independently-generated single photons using a room-temperature atomic quantum memory. The photon source and the memory are interconnected by fibers and employ the same ladder-level atomic scheme. We store and retrieve the heralded single photons with end-to-end efficiency of $eta_text{e2e}=25%$ and final anti-bunching of $g^{(2)}_text{h}=0.023$. Our synchronization process results in over tenfold increase in the photon-pair coincidence rate, reaching a rate of more than $1000$ detected synchronized photon pairs per second. The indistinguishability of the synchronized photons is verified by a Hong-Ou-Mandel interference measurement." @default.
- W4384698902 created "2023-07-20" @default.
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- W4384698902 date "2023-07-18" @default.
- W4384698902 modified "2023-09-26" @default.
- W4384698902 title "Single-Photon Synchronization with a Room-Temperature Atomic Quantum Memory" @default.
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- W4384698902 doi "https://doi.org/10.1103/physrevlett.131.033601" @default.
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