English

Observation of quantum nonclassicality without freedom of choice in a minimal causal network

Quantum Physics 2026-08-04 v1

Abstract

Quantum causal networks enable tests of nonclassicality beyond Bell nonlocality while relaxing some physically unwarranted assumptions. By relaxing the freedom-of-choice and spacelike-separation assumptions, the unrelated-confounders causal networks provide a simple and robust route to certify quantum nonclassicality. Here, we implement the minimal three-node unrelated-confounders network in an optical experiment using two independent polarization-entangled photon sources and an intervention at the central node, experimentally achieved with a high-fidelity entangling measurement. We employ a causal data-fusion protocol that combines observational and interventional data to significantly improve the protocol's noise tolerance, and observe a violation of the corresponding hybrid causal inequality by more than three standard deviations. Our results provide deeper insights into quantum nonlocality in networks and highlight the UC network as a compact, experimentally accessible platform for device-independent quantum protocols that do not require actively chosen measurement settings.

Keywords

Cite

@article{arxiv.2608.03552,
  title  = {Observation of quantum nonclassicality without freedom of choice in a minimal causal network},
  author = {Ya Xiao and Yan-Xin Rong and Ran He and Yu Meng and Yang Zhang and Xiao-Ye Xu and Yong-Jian Han and Zheng-Hao Liu and Yong-Jian Gu},
  journal= {arXiv preprint arXiv:2608.03552},
  year   = {2026}
}