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Satellite-assisted quantum communication with single photon sources and atomic memories

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arxiv 2411.09533 v1 pith:6F2HKRLQ submitted 2024-11-14 quant-ph

classification quant-ph
keywords quantumopticalachievedatomicbelldecreasedistancesdistribution
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Satellite-based quantum repeaters are a promising means to reach global distances in quantum networking due to the polynomial decrease of optical transmission with distance in free space, in contrast to the exponential decrease in optical fibers. We propose a satellite-based quantum repeater architecture with trapped individual atomic qubits, which can serve both as quantum memories and true single photon sources. This hardware allows for nearly deterministic Bell measurements and exhibits long coherence times without the need for costly cryogenic technology in space. We develop a detailed analytical model of the repeater, which includes the main imperfections of the quantum hardware and the optical link, allowing us to estimate that high-rate and high-fidelity entanglement distribution can be achieved over inter-continental distances. In particular, we find that high fidelity entanglement distribution over thousands of kilometres at a rate of 100 Hz can be achieved with orders of magnitude fewer memory modes than conventional architectures based on optical Bell state measurements.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Satellite-assisted Entanglement Distribution with High-Dimensional Photonic Encoding

    quant-ph 2025-05 conditional novelty 6.0 of 10

    A satellite SPDC source operated as a time-bin qudit source can distribute multiple high-fidelity Bell pairs between ground stations orders of magnitude faster than qubit-based operation.

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