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- W2863133075 abstract "Distributing entangled pairs is a fundamental operation required for many quantum information science and technology tasks. In a general entanglement distribution scheme, a photonic pulse is used to entangle a pair of remote quantum memories. Most applications require multiple entangled pairs between remote users, which in turn necessitates several photonic pulses (single photons) being sent through the channel connecting those users. Here we present an entanglement distribution scheme using only a single photonic pulse to entangle an arbitrary number of remote quantum memories. As a consequence the spatial temporal resources are dramatically reduced. We show how this approach can be simultaneously combined with an entanglement purification protocol to generate even higher fidelity entangled pairs. The combined approach is faster to generate those high quality pairs and requires less resources in terms of both matter qubits and photons consumed. To estimate the efficiency of our scheme we derive a normalized rate taking into account the raw rate at which the users can generate purified entangled pairs divided by the total resources used. We compare the efficiency of our system with the Deutsch protocol in which the entangled pairs have been created in a traditional way. Our scheme outperforms this approach both in terms of generation rate and resources required. Finally we show how our approach can be extended to more general error correction and detection schemes with higher normalized generation rates naturally occurring." @default.
- W2863133075 created "2018-07-19" @default.
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- W2863133075 creator A5081979382 @default.
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- W2863133075 date "2019-02-27" @default.
- W2863133075 modified "2023-10-17" @default.
- W2863133075 title "Quantum multiplexing" @default.
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- W2863133075 cites W1967140673 @default.
- W2863133075 cites W1968187163 @default.
- W2863133075 cites W1969546033 @default.
- W2863133075 cites W1970006170 @default.
- W2863133075 cites W1971575720 @default.
- W2863133075 cites W1971600310 @default.
- W2863133075 cites W1978552568 @default.
- W2863133075 cites W1979315844 @default.
- W2863133075 cites W1990593935 @default.
- W2863133075 cites W1996035955 @default.
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- W2863133075 cites W1998495845 @default.
- W2863133075 cites W2000446243 @default.
- W2863133075 cites W2000665885 @default.
- W2863133075 cites W2000900144 @default.
- W2863133075 cites W2012197762 @default.
- W2863133075 cites W2015179126 @default.
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- W2863133075 cites W2019418467 @default.
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- W2863133075 cites W2032147770 @default.
- W2863133075 cites W2035993353 @default.
- W2863133075 cites W2038359097 @default.
- W2863133075 cites W2041206904 @default.
- W2863133075 cites W2042683576 @default.
- W2863133075 cites W2043137390 @default.
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- W2863133075 doi "https://doi.org/10.1103/physreva.99.022337" @default.
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