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    Entanglement recovery by reversing the effect of noise in a quantum repeater

    Sewon Jeong1,2, Shrobona Bagchi1,3, Jaehak Lee1,4, Hyang-Tag Lim1,4, Yong-Su Kim1,4, Taeyoung Choi2, and Seung-Woo Lee5,*

    • *Contact author: swleego@gmail.com

    Phys. Rev. A 114, 012602 – Published 6 July, 2026

    DOI: https://doi.org/10.1103/sbdv-ql64

    Abstract

    We propose a method to directly recover the degree of entanglement distributed by entanglement swapping in the presence of noise. Our approach introduces a reversing operation that probabilistically undoes the effect of amplitude damping or photon loss on a single entangled pair, enabling heralded recovery of entanglement. We demonstrate that entanglement can be substantially recovered even under strong noise, including parameter regimes where the distributed entanglement would otherwise vanish due to entanglement sudden death. We analyze the effectiveness of the protocol in two representative repeater models, i.e., two-way and one-way architectures, and identify the optimal reversing strategy. Due to its heralded and single-copy nature, our protocol is readily compatible with other entanglement recovery techniques such as entanglement purification and distillation. Our work provides a practical and experimentally feasible way toward robust entanglement distribution in current and near-term quantum repeater architectures.

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