Experimental demonstration of genuine tripartite nonlocality under
strict locality conditions
- URL: http://arxiv.org/abs/2203.00889v2
- Date: Wed, 3 Aug 2022 20:03:38 GMT
- Title: Experimental demonstration of genuine tripartite nonlocality under
strict locality conditions
- Authors: Liang Huang, Xue-Mei Gu, Yang-Fan Jiang, Dian Wu, Bing Bai, Ming-Cheng
Chen, Qi-Chao Sun, Jun Zhang, Sixia Yu, Qiang Zhang, Chao-Yang Lu, Jian-Wei
Pan
- Abstract summary: Nonlocality captures one of the counterintuitive features of nature that defies classical intuition.
Recent investigations reveal that our physical world's nonlocality is at least tripartite.
We experimentally demonstrate such genuine tripartite nonlocality in a network under strict locality constraints.
- Score: 16.812051020169257
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Nonlocality captures one of the counterintuitive features of nature that
defies classical intuition. Recent investigations reveal that our physical
world's nonlocality is at least tripartite; i.e., genuinely tripartite nonlocal
correlations in nature cannot be reproduced by any causal theory involving
bipartite nonclassical resources and unlimited shared randomness. Here, by
allowing the fair sampling assumption and postselection, we experimentally
demonstrate such genuine tripartite nonlocality in a network under strict
locality constraints that are ensured by spacelike separating all relevant
events and employing fast quantum random number generators and high-speed
polarization measurements. In particular, for a photonic quantum triangular
network we observe a locality-loophole-free violation of the Bell-type
inequality by 7.57 standard deviations for a postselected tripartite
Greenberger-Horne-Zeilinger state of fidelity $(93.13 \pm 0.24)\%$, which
convincingly disproves the possibility of simulating genuine tripartite
nonlocality by bipartite nonlocal resources with globally shared randomness.
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