Experimental Test of Nonlocal Causality
arXiv:1602.02767 · doi:10.1126/sciadv.1600162
Abstract
Explaining observations in terms of causes and effects is central to all of empirical science. Correlations between entangled quantum particles, however, seem to defy such an explanation. To recover a causal picture in this case, some of the fundamental assumptions of causal explanations have to give way. Here we consider a broad class of models where one of these assumptions, Bell's local causality, is relaxed by allowing a direct influence from one measurement outcome to the other. We use interventional and observational data from a photonic experiment to bound the strength of this causal influence in a two-party Bell scenario and test a novel Bell-type inequality for the considered models. Our results demonstrate the incompatibility of quantum mechanics with an important class of nonlocal causal models, which includes Bell's original model as a special case. Recovering a classical causal picture of quantum correlations thus requires an even more counter-intuitive modification of our classical notion of cause and effect.
References in corpus (17)
- Significant-loophole-free test of Bell's theorem with entangled photons
- A wavelength-tunable fiber-coupled source of narrowband entangled photons
- An experimental test of non-local realism
- Quantum causal modelling
- Beyond Bell's Theorem: Correlation Scenarios
- Local deterministic model of singlet state correlations based on relaxing measurement independence
- Real time demonstration of high bitrate quantum random number generation with coherent laser light
- Relaxed Bell inequalities and Kochen-Specker theorems
- Geometry of the faithfulness assumption in causal inference
- Information-Theoretic Implications of Quantum Causal Structures
- Theory-independent limits on correlations from generalised Bayesian networks
- Inferring causal structure: a quantum advantage
- A unifying framework for relaxations of the causal assumptions in Bell's theorem
- Testing quantum correlations versus single-particle properties within Leggett's model and beyond
- Quantifier Elimination for Statistical Problems
- Locality, detection efficiencies, and probability polytopes
- Demonstration of Quantum Nonlocality in presence of Measurement Dependence
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