Cosmic Bell Test: Measurement Settings from Milky Way Stars

Johannes Handsteiner (Corresponding author), Andrew S. Friedman, Dominik Rauch, Jason Gallicchio, Bo Liu, Hannes Hosp, Johannes Kofler, David Bricher, Matthias Fink, Calvin Leung, Anthony Mark, Hien T. Nguyen, Isabella Sanders, Fabian Steinlechner, Rupert Ursin, Soeren Wengerowsky, Alan H. Guth, David I. Kaiser, Thomas Scheidl, Anton Zeilinger

Publications: Contribution to journalArticlePeer Reviewed

Abstract

Bell's theorem states that some predictions of quantum mechanics cannot be reproduced by a local-realist theory. That conflict is expressed by Bell's inequality, which is usually derived under the assumption that there are no statistical correlations between the choices of measurement settings and anything else that can causally affect the measurement outcomes. In previous experiments, this "freedom of choice" was addressed by ensuring that selection of measurement settings via conventional "quantum random number generators" was spacelike separated from the entangled particle creation. This, however, left open the possibility that an unknown cause affected both the setting choices and measurement outcomes as recently as mere microseconds before each experimental trial. Here we report on a new experimental test of Bell's inequality that, for the first time, uses distant astronomical sources as "cosmic setting generators." In our tests with polarization-entangled photons, measurement settings were chosen using real-time observations of Milky Way stars while simultaneously ensuring locality. Assuming fair sampling for all detected photons, and that each stellar photon's color was set at emission, we observe statistically significant 7.31σ and 11.93σ violations of Bell's inequality with estimated p values of 1.8×10-13 and 4.0×10-33, respectively, thereby pushing back by ∼600 years the most recent time by which any local-realist influences could have engineered the observed Bell violation.

Original languageEnglish
Article number060401
Number of pages8
JournalPhysical Review Letters
Volume118
Issue number6
DOIs
Publication statusPublished - 7 Feb 2017

Austrian Fields of Science 2012

  • 103025 Quantum mechanics
  • 103004 Astrophysics

Keywords

  • HIDDEN-VARIABLE THEORIES
  • INFLATIONARY UNIVERSE
  • ENTANGLED PHOTONS
  • ELECTRON SPINS
  • VIOLATION
  • INEQUALITIES
  • THEOREM
  • NONLOCALITY
  • EXTINCTION
  • RANDOMNESS

Fingerprint

Dive into the research topics of 'Cosmic Bell Test: Measurement Settings from Milky Way Stars'. Together they form a unique fingerprint.

Cite this