Nonlinear Bell inequalities tailored for quantum networks
Abstract
In a quantum network, distant observers sharing physical resources emitted by independent sources can establish strong correlations, which defy any classical explanation in terms of local variables. We discuss the characterization of nonlocal correlations in such a situation, when compared to those that can be generated in networks distributing independent local variables. We present an iterative procedure for constructing Bell inequalities tailored for networks: starting from a given network, and a corresponding Bell inequality, our technique provides new Bell inequalities for a more complex network, involving one additional source and one additional observer. The relevance of our method is illustrated on a variety of networks, for which we demonstrate significant quantum violations.
Cite
@article{arxiv.1506.07380,
title = {Nonlinear Bell inequalities tailored for quantum networks},
author = {Denis Rosset and Cyril Branciard and Tomer Jack Barnea and Gilles Pütz and Nicolas Brunner and Nicolas Gisin},
journal= {arXiv preprint arXiv:1506.07380},
year = {2016}
}
Comments
8 pages, 2 figures. Comments welcome