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Minimum Detection Efficiencies for Loophole-free Genuine Nonlocality Tests

Quantum Physics 2024-05-21 v2

Abstract

The certification of quantum nonlocality, which has immense significance in architecting device-independent technologies, confronts severe experimental challenges. Detection loophole, originating from the unavailability of perfect detectors, is one of the major issues amongst them. In the present study we focus on the minimum detection efficiency (MDE) required to detect various forms of genuine nonlocality, originating from the type of causal constraints imposed on the involved parties. In this context, we demonstrate that the MDE needed to manifest the recently suggested T2T_2-type nonlocality deviates significantly from perfection. Additionally, we have computed the MDE necessary to manifest Svetlichny's nonlocality, with state-independent approach markedly reducing the previously established bound. Finally, considering the inevitable existence of noise we demonstrate the robustness of the imperfect detectors to certify T2T_2-type nonlocality.

Cite

@article{arxiv.2401.16134,
  title  = {Minimum Detection Efficiencies for Loophole-free Genuine Nonlocality Tests},
  author = {Subhendu B. Ghosh and Snehasish Roy Chowdhury and Ranendu Adhikary and Arup Roy and Tamal Guha},
  journal= {arXiv preprint arXiv:2401.16134},
  year   = {2024}
}

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R2 v1 2026-06-28T14:30:10.237Z