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arXiv:1401.7081 [quant-ph]AbstractReferencesReviewsResources

Graph-Theoretic Approach to Quantum Correlations

Adan Cabello, Simone Severini, Andreas Winter

Published 2014-01-28Version 1

Correlations in Bell and noncontextuality inequalities can be expressed as a positive linear combination of probabilities of events. Exclusive events can be represented as adjacent vertices of a graph, so correlations can be associated to a subgraph. We show that the maximum value of the correlations for classical, quantum, and more general theories is the independence number, the Lov\'asz number, and the fractional packing number of this subgraph, respectively. We also show that, for any graph, there is always a correlation experiment such that the set of quantum probabilities is exactly the Gr\"otschel-Lov\'asz-Schrijver theta body. This identifies these combinatorial notions as fundamental physical objects and provides a method for singling out experiments with quantum correlations on demand.

Comments: REVTeX4, 6 pages, 1 figure. See also arXiv:1010.2163
Journal: Phys. Rev. Lett. 112 (2014) 040401
Categories: quant-ph
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