Classical model of quantum interferometry tests of macrorealism
Abstract
Macrorealism is a characteristic feature of many, but not all, classical systems. It is known, for example, that classical light can violate a Leggett-Garg inequality and, hence, reject a macrorealist interpretation. A recent experiment has used entangled light and negative measurements to demonstrate a loophole-free test of macrorealism [PRX Quantum , 010307 (2022)]. This paper shows that such an experiment, while soundly rejecting macrorealism, may nevertheless be open to a classical interpretation. This is done by offering an explicit classical model of heralded photon detection in an optical interferometer with beam blockers. A numerical analysis of the model shows good agreement with experimental observations and consistency with both local realism and a rejection of macrorealism.
Cite
@article{arxiv.2212.03301,
title = {Classical model of quantum interferometry tests of macrorealism},
author = {Brian R. La Cour},
journal= {arXiv preprint arXiv:2212.03301},
year = {2022}
}
Comments
7 pages, 2 figures, accepted for publication in AVS Quantum Science