English

Event-Ready Bell Test Using Entangled Atoms Simultaneously Closing Detection and Locality Loopholes

Quantum Physics 2017-07-10 v2

Abstract

An experimental test of Bell's inequality allows ruling out any local-realistic description of nature by measuring correlations between distant systems. While such tests are conceptually simple, there are strict requirements concerning the detection efficiency of the involved measurements, as well as the enforcement of spacelike separation between the measurement events. Only very recently could both loopholes be closed simultaneously. Here we present a statistically significant, event-ready Bell test based on combining heralded entanglement of atoms separated by 398m398\,\mathrm{m} with fast and efficient measurements of the atomic spin states closing essential loopholes. We obtain a violation with S=2.221±0.033S=2.221\pm0.033 (compared to the maximal value of 2 achievable with models based on local hidden variables) which allows us to refute the hypothesis of local-realism with a significance level P<2.57109P<2.57\cdot10^{-9}.

Keywords

Cite

@article{arxiv.1611.04604,
  title  = {Event-Ready Bell Test Using Entangled Atoms Simultaneously Closing Detection and Locality Loopholes},
  author = {Wenjamin Rosenfeld and Daniel Burchardt and Robert Garthoff and Kai Redeker and Norbert Ortegel and Markus Rau and Harald Weinfurter},
  journal= {arXiv preprint arXiv:1611.04604},
  year   = {2017}
}

Comments

30 pages, 10 figures, supplemental material included

R2 v1 2026-06-22T16:52:12.839Z