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Genuinely multipartite entangled quantum states with fully local hidden variable models and hidden multipartite nonlocality

arXiv
Authors: Joseph Bowles, Jérémie Francfort, Mathieu Fillettaz, Flavien Hirsch, Nicolas Brunner

Year

2015

Paper ID

25942

Status

Preprint

Abstract Read

~2 min

Abstract Words

91

Citations

N/A

Abstract

The relation between entanglement and nonlocality is discussed in the case of multipartite quantum systems. We show that, for any number of parties, there exist genuinely multipartite entangled states which admit a fully local hidden variable model, i.e. where all parties are separated. Hence, although these states are entangled in the strongest possible sense, they cannot lead to Bell inequality violation considering general non-sequential local measurements. Then, we show that the nonlocality of these states can nevertheless be activated using sequences of local measurements, thus revealing genuine multipartite hidden nonlocality.

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  • This paper contributes to the Quantum Foundations research area in the Quantum Articles archive.
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  • The relation between entanglement and nonlocality is discussed in the case of multipartite quantum systems.

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