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Long-distance multiplexed quantum teleportation from a telecom photon to a solid-state qubit

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arxiv 2209.06249 v2 pith:NMYKX5Y7 submitted 2022-09-13 quant-ph

classification quant-ph
keywords quantumteleportationqubitallowingimplementationinformationlonglong-distance
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Quantum teleportation is an essential capability for quantum networks, allowing the transmission of quantum bits (qubits) without a direct exchange of quantum information. Its implementation between distant parties requires teleportation of the quantum information to matter qubits that store it for long enough to allow users to perform further processing. Here we demonstrate long distance quantum teleportation from a photonic qubit at telecom wavelength to a matter qubit, stored as a collective excitation in a solid-state quantum memory. Our system encompasses an active feed-forward scheme, implementing a phase shift on the qubit retrieved from the memory, therefore completing the protocol. Moreover, our approach is time-multiplexed, allowing for an increase in the teleportation rate, and is directly compatible with the deployed telecommunication networks, two key features for its scalability and practical implementation, that will play a pivotal role in the development of long-distance quantum communication.

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  1. Directional search for light dark matter with quantum sensors

    hep-ph 2025-06 conditional novelty 6.0 of 10

    A protocol measures the dark matter wind direction by interfering the quantum states of two separated sensors, using postselection on a single-excitation outcome and a non-local observable.

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