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    Detection of non-Gaussian quantum correlations through measurement-after-interaction protocols

    Jiajie Guo1, Feng-Xiao Sun1,2, Matteo Fadel3,*, and Qiongyi He1,4,5,6,†

    • *Contact author: fadelm@phys.ethz.ch
    • †Contact author: qiongyihe@pku.edu.cn

    Phys. Rev. A 113, 012409 – Published 2 January, 2026

    DOI: https://doi.org/10.1103/b9d8-dgbf

    Abstract

    Additional state evolutions performed before measurement, also called measurement-after-interactions (MAI) protocols, have shown a great potential for increasing the sensitivity of metrological scenarios. Here, we go beyond this result and show that MAI techniques can significantly enhance the detection capability of witnesses for quantum correlations. In particular, we show the possibility of detecting Einstein-Podolsky-Rosen steering and mode entanglement of non-Gaussian states from linear measurements only. Moreover, we show that such approach allows for a significantly higher noise robustness.

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