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Overcoming the repeaterless bound in continuous-variable quantum communication without quantum memories

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arxiv 2105.03586 v1 pith:BRL6ACVX submitted 2021-05-08 quant-ph

classification quant-ph
keywords quantumboundrepeaterlessprotocolcontinuous-variableentanglementmemoriesrepeater
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One of the main problems in quantum communications is how to achieve high rates at long distances. Quantum repeaters, i.e., untrusted, intermediate relay stations, are necessary to overcome the repeaterless bound which sets the fundamental rate-distance limit of repeaterless communications. In this work, we introduce a continuous-variable protocol which overcomes the repeaterless bound and scales like the single-repeater bound using just one linear-optical device called a "quantum scissor", combining the entanglement distillation and entanglement swapping elements of previous repeater proposals into a single step, thus, removing the need for quantum memories. Implementing a standard continuous-variable quantum key distribution protocol using our repeater we predict key rates which surpass the repeaterless bound. Our protocol works well for non-ideal single-photon sources and non-ideal single-photon detectors, and can tolerate some level of excess noise, making our protocol implementable with existing technology. We show that our scheme can be extended to longer repeater chains using quantum memories, using less physical resources than previous schemes. Furthermore, for applications beyond key distribution, our scheme generalises to higher order and distils more entanglement at the cost of a reduced probability of success.

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Cited by 2 Pith papers

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

  1. Loss-Tolerant Quantum Communication via Bosonic-GKP-Parity-Encoding

    quant-ph 2026-04 unverdicted novelty 6.5 of 10

    GKP teleamplification plus a parity-encoded concatenated Bell measurement with clipping and relay teleamplifiers yields higher secret-key rates over thousands of kilometres using orders-of-magnitude fewer qubits than ...

  2. Relaying Quantum Information

    quant-ph 2025-07 conditional novelty 5.0 of 10

    For finite-dimensional quantum relay channels, the paper proves achievable quantum-information and entanglement-generation rates using full and partial decode-forward coding.

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