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October 16, 2025Physical Review Letters3 citations

Bell Nonlocality in Quantum Networks with Unreliable Sources: Loophole-Free Postelection via Self-Testing

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SBSadra BoreiriUniversity of GenevaNBNicolas BrunnerUniversity of GenevaPSPavel SekatskiUniversity of Geneva

Key Points

  • Observing fair-sampling allows for safe postselection and avoids the detection loophole.
  • The method ensures that inconclusive events can be discarded without compromising source independence.
  • Saturation of the Finner inequality facilitates self-testing of the quantum model for reliability.
  • Improved randomness generation is shown for a photonic bell test using a probabilistic source.

Abstract

We discuss Bell nonlocality in quantum networks with unreliable sources. Our main result is a condition on the observed data that ensures that inconclusive events can be safely discarded, without introducing any loophole. More formally, we characterize the fair-sampling property for measurements in a network. When all measurements are fair-sampling, we show that the postselection of conclusive outcomes does not compromise the assumption of source independence, hence avoiding the detection loophole. Furthermore, we show that in some cases, the fair-sampling property can in fact be certified directly from observed data. To show this, we prove that saturation of the Finner inequality provides a self-test of the underlying quantum model. We illustrate the relevance of our results by demonstrating an improvement in device-independent randomness generation for a photonic Bell test with a probabilistic source and for the triangle network.

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Cite This Study

Boreiri et al. (2025) studied this question.

synapsesocial.com/papers/68f0f51d8dd8ea469b1d6f4chttps://doi.org/10.1103/bqwm-ll5y
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