Trade-off relations between Bell nonlocality and local Kochen-Specker contextuality in generalized Bell scenarios
- URL: http://arxiv.org/abs/2405.02964v1
- Date: Sun, 5 May 2024 15:09:00 GMT
- Title: Trade-off relations between Bell nonlocality and local Kochen-Specker contextuality in generalized Bell scenarios
- Authors: Lucas E. A. Porto, Gabriel Ruffolo, Rafael Rabelo, Marcelo Terra Cunha, Pawel Kurzynski,
- Abstract summary: We show that there cannot be arbitrary amounts of both of these two resources together.
We discuss how it can be understood in terms of a global' notion of contextuality.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: The relations between Bell nonlocality and Kochen-Specker contextuality have been subject of research from many different perspectives in the last decades. Recently, some interesting results on these relations have been explored in the so-called generalized Bell scenarios, that is, scenarios where Bell spatial separation (or agency independence) coexist with (at least one of the) parties' ability to perform compatible measurements at each round of the experiment. When this party has an $n$-cycle compatiblity setup, it was first claimed that Bell nonlocality could not be concomitantly observed with contextuality at this party's local experiment. However, by a more natural reading of the definition of locality, it turns out that both Bell nonlocality and local contextuality can, in fact, be jointly present. In spite of it, in this work we prove that there cannot be arbitrary amounts of both of these two resources together. That is, we show the existence of a trade-off relation between Bell nonlocality and local contextuality in such scenarios. We explore this trade-off both in terms of inequalities and quantifiers, and we discuss how it can be understood in terms of a `global' notion of contextuality. Furthermore, we show that such notion does not only encompass local contextuality and Bell nonlocality, but also other forms of nonclassical correlations.
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