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    Wei-Qian Zhao, Si-Nan Pang, Zi-Fu Su, Tian-Ming Zhao, Jin-Dong Wang, Ya-Fei Yu. Rigorous verification of quantum contextuality from anomalous weak valueJ. Chin. Phys. B, 2026, 35(2): 020301.
    Wei-Qian Zhao, Si-Nan Pang, Zi-Fu Su, Tian-Ming Zhao, Jin-Dong Wang, Ya-Fei Yu. Rigorous verification of quantum contextuality from anomalous weak valueJ. Chin. Phys. B, 2026, 35(2): 020301.
  • Rigorous verification of quantum contextuality from anomalous weak value

    • Weak measurement offers a powerful framework for probing nonclassical features of quantum mechanics, with anomalous weak values serving as operational signatures of contextuality. While the anomalous weak value verification of quantum contextuality has been predominantly investigated in the single-photon regime and analyzed under approximation condition of infinitesimally small perturbation strength. This study releases the approximation condition and takes into account the impact of perturbation strength on the rigor of the verification. And the investigation on the verification of contextuality is extended to the multi-photon scenarios for observing the influence of the correlation between photons on the verification. Without the limitation of infinitesimally small probability of disturbance, anomalous weak values are identified as necessary for contextuality to emerge, thereby refining the criterion proposed by Pusey Phys. Rev. Lett.113 200401 (2014). In the multi-photon scenarios, the emergence of contextuality also depends strongly on both the photon number and the photon-number distribution state. In particular, contextuality is found to be maximized when the single-photon component dominates and the second-order correlation is lower. These results highlight the critical role of photon statistics in experimental tests of contextuality via anomalous weak values.
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