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- W3137042392 abstract "Abstract High-rate generation of hybrid photon-matter entanglement remains a fundamental building block of quantum network architectures enabling protocols such as quantum secure communication or quantum distributed computing. While a tremendous effort has been made to overcome technological constraints limiting the efficiency and coherence times of current systems, an important complementary approach is to employ parallel and multiplexed architectures. Here we follow this approach experimentally demonstrating the generation of bipartite polarization-entangled photonic states across more than 500 modes, with a programmable delay for the second photon enabled by qubit storage in a wavevector-multiplexed cold-atomic quantum memory. We demonstrate Clauser, Horne, Shimony, Holt inequality violation by over 3 standard deviations, lasting for at least 45 μ s storage time for half of the modes. The ability to shape hybrid entanglement between the polarization and wavevector degrees of freedom provides not only multiplexing capabilities but also brings prospects for novel protocols." @default.
- W3137042392 created "2021-03-29" @default.
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- W3137042392 date "2021-03-08" @default.
- W3137042392 modified "2023-10-18" @default.
- W3137042392 title "Massively-multiplexed generation of Bell-type entanglement using a quantum memory" @default.
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- W3137042392 doi "https://doi.org/10.1038/s42005-021-00551-1" @default.
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