4.8 Article

Experimental Demonstration that No Tripartite-Nonlocal Causal Theory Explains Nature's Correlations

Journal

PHYSICAL REVIEW LETTERS
Volume 129, Issue 15, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.129.150402

Keywords

-

Funding

  1. Swiss National Science Foundation (SNF)
  2. Perimeter Institute for Theoretical Physics
  3. Government of Canada through the Department of Innovation, Science and Economic Development Canada
  4. Province of Ontario through the Ministry of Colleges and Universities
  5. Swiss National Fund Early Mobility Grant [P2GEP2_19144]
  6. European Union NextGenerationEU/PRTR
  7. Innovation Program for Quantum Science and Technology [ZD0202030401]
  8. National Natural Science Foundation of China [11774335, 11821404, 11734015, 62075208]
  9. Government of Spain [MCIN/AEI] [FIS2020TRANQI, CEX2019-000910-S]
  10. Fundacio Cellex
  11. Fundacio Mir-Puig
  12. ERC AdG CERQUTE
  13. Generalitat de Catalunya (CERCA)
  14. MCIN/AEI [PCI2021-122022-2B]

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Quantum theory predicts the existence of genuinely tripartite-entangled states that cannot be obtained from local operations and unlimited shared randomness. Researchers have experimentally verified these tripartite correlations and proposed a new method for falsifying causal theories limited to bipartite nonclassical resources. The validity of this method has been demonstrated through experiments.
Quantum theory predicts the existence of genuinely tripartite-entangled states, which cannot be obtained from local operations over any bipartite-entangled states and unlimited shared randomness. Some of us recently proved that this feature is a fundamental signature of quantum theory. The state vertical bar GHZ(3)> (vertical bar 000 > + vertical bar 111 >) / root 2p gives rise to tripartite quantum correlations that cannot be explained by any causal theory limited to bipartite nonclassical common causes of any kind (generalizing entanglement) assisted with unlimited shared randomness. Hence, any conceivable physical theory that would reproduce quantum predictions will necessarily include genuinely tripartite resources. In this Letter, we verify that such tripartite correlations are experimentally achievable. We derive a new device-independent witness capable of falsifying causal theories wherein nonclassical resources are merely bipartite. Using a high-performance photonic vertical bar GHZ(3)> state with fidelities of 0.9741 +/- 0.002, we provide a clear experimental violation of that witness by more than 26.3 standard deviations, under the locality and fair sampling assumption. We generalize our Letter to the vertical bar GHZ(4)vertical bar state, obtaining correlations that cannot be explained by any causal theory limited to tripartite nonclassical common causes assisted with unlimited shared randomness.

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