English

Experimental Verification of an Indefinite Causal Order

Quantum Physics 2017-03-31 v2

Abstract

Investigating the role of causal order in quantum mechanics has recently revealed that the causal distribution of events may not be a-priori well-defined in quantum theory. While this has triggered a growing interest on the theoretical side, creating processes without a causal order is an experimental task. Here we report the first decisive demonstration of a process with an indefinite causal order. To do this, we quantify how incompatible our set-up is with a definite causal order by measuring a 'causal witness'. This mathematical object incorporates a series of measurements which are designed to yield a certain outcome only if the process under examination is not consistent with any well-defined causal order. In our experiment we perform a measurement in a superposition of causal orders - without destroying the coherence - to acquire information both inside and outside of a 'causally non-ordered process'. Using this information, we experimentally determine a causal witness, demonstrating by almost seven standard deviations that the experimentally implemented process does not have a definite causal order.

Keywords

Cite

@article{arxiv.1608.01683,
  title  = {Experimental Verification of an Indefinite Causal Order},
  author = {Giulia Rubino and Lee A. Rozema and Adrien Feix and Mateus Araújo and Jonas M. Zeuner and Lorenzo M. Procopio and Časlav Brukner and Philip Walther},
  journal= {arXiv preprint arXiv:1608.01683},
  year   = {2017}
}

Comments

11 pages + a 9-page Appendix; 5 figures + 5 in the Appendix. Corrected definitions of unitaries in Appendix

R2 v1 2026-06-22T15:12:45.896Z