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February 7, 2026Nature Communications0 citationsOpen Access

Bell correlations between momentum-entangled pairs of 4He* atoms

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YAY. S. AthreyaSKS. KannanXYX. T. Yan

Key Points

  • To experimentally observe Bell correlations in the motional states of momentum-entangled ultracold helium atoms.
  • Generated momentum-entangled pairs via s-wave collisions.
  • Employed a Rarity-Tapster interferometer to measure correlations.
  • Applied Bell-test framework to observe violations of Bell inequality.
  • Observed atom-atom correlations necessary for Bell inequality violations.
  • Demonstrated potential applications in studying quantum mechanics and gravitational effects with ultracold atoms.

Abstract

Nonlocal entanglement between pair-correlated particles is a highly counter-intuitive aspect of quantum mechanics, where measurement on one particle can instantly affect the other, regardless of distance. While the rigorous Bell’s inequality framework has enabled the demonstration of such entanglement in photons and atomic internal states, no experiment has yet involved motional states of massive particles. Here we report the experimental observation of Bell correlations in motional states of momentum-entangled ultracold helium atoms. Momentum-entangled pairs are first generated via s -wave collisions. Using a Rarity-Tapster interferometer and a Bell-test framework, we observe atom-atom correlations required for violation of a Bell inequality. This result shows the potential of ultracold atoms for fundamental tests of quantum mechanics and opens new avenues to studying gravitational effects in quantum states.

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Cite This Study

Athreya et al. (2026) studied this question.

synapsesocial.com/papers/698692e89d267392364c996dhttps://doi.org/10.1038/s41467-026-69070-3
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