A Combinatorial Approach to Nonlocality and Contextuality
So far, most of the literature on (quantum) contextuality and the Kochen–Specker theorem seems either to concern particular examples of contextuality, or be considered as quantum logic. Here, we develop a general formalism for contextuality scenarios based on the combinatorics of hypergraphs, which...
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Published in | Communications in mathematical physics Vol. 334; no. 2; pp. 533 - 628 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer Berlin Heidelberg
01.03.2015
Springer Verlag |
Subjects | |
Online Access | Get full text |
ISSN | 0010-3616 1432-0916 |
DOI | 10.1007/s00220-014-2260-1 |
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Abstract | So far, most of the literature on (quantum) contextuality and the Kochen–Specker theorem seems either to concern particular examples of contextuality, or be considered as quantum logic. Here, we develop a general formalism for contextuality scenarios based on the combinatorics of hypergraphs, which significantly refines a similar recent approach by Cabello, Severini and Winter (CSW). In contrast to CSW, we explicitly include the normalization of probabilities, which gives us a much finer control over the various sets of probabilistic models like classical, quantum and generalized probabilistic. In particular, our framework specializes to (quantum) nonlocality in the case of Bell scenarios, which arise very naturally from a certain product of contextuality scenarios due to Foulis and Randall. In the spirit of CSW, we find close relationships to several graph invariants. The recently proposed Local Orthogonality principle turns out to be a special case of a general principle for contextuality scenarios related to the Shannon capacity of graphs. Our results imply that it is strictly dominated by a low level of the Navascués–Pironio–Acín hierarchy of semidefinite programs, which we also apply to contextuality scenarios.
We derive a wealth of results in our framework, many of these relating to quantum and supraquantum contextuality and nonlocality, and state numerous open problems. For example, we show that the set of quantum models on a contextuality scenario can in general not be characterized in terms of a graph invariant.
In terms of graph theory, our main result is this: there exist two graphs
G
1
and
G
2
with the properties
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AbstractList | So far, most of the literature on (quantum) contextuality and the Kochen–Specker theorem seems either to concern particular examples of contextuality, or be considered as quantum logic. Here, we develop a general formalism for contextuality scenarios based on the combinatorics of hypergraphs, which significantly refines a similar recent approach by Cabello, Severini and Winter (CSW). In contrast to CSW, we explicitly include the normalization of probabilities, which gives us a much finer control over the various sets of probabilistic models like classical, quantum and generalized probabilistic. In particular, our framework specializes to (quantum) nonlocality in the case of Bell scenarios, which arise very naturally from a certain product of contextuality scenarios due to Foulis and Randall. In the spirit of CSW, we find close relationships to several graph invariants. The recently proposed Local Orthogonality principle turns out to be a special case of a general principle for contextuality scenarios related to the Shannon capacity of graphs. Our results imply that it is strictly dominated by a low level of the Navascués–Pironio–Acín hierarchy of semidefinite programs, which we also apply to contextuality scenarios.
We derive a wealth of results in our framework, many of these relating to quantum and supraquantum contextuality and nonlocality, and state numerous open problems. For example, we show that the set of quantum models on a contextuality scenario can in general not be characterized in terms of a graph invariant.
In terms of graph theory, our main result is this: there exist two graphs
G
1
and
G
2
with the properties
α
(
G
1
)
=
Θ
(
G
1
)
,
α
(
G
2
)
=
ϑ
(
G
2
)
,
Θ
(
G
1
⊠
G
2
)
>
Θ
(
G
1
)
·
Θ
(
G
2
)
,
Θ
(
G
1
+
G
2
)
>
Θ
(
G
1
)
+
Θ
(
G
2
)
. So far, most of the literature on (quantum) contextuality and the Kochen-Specker theorem seems either to concern particular examples of contextuality, or be considered as quantum logic. Here, we develop a general formalism for contextuality scenarios based on the combinatorics of hypergraphs which significantly refines a similar recent approach by Cabello, Severini and Winter (CSW). In contrast to CSW, we explicitly include the normalization of probabilities, which gives us a much finer control over the various sets of probabilistic models like classical, quantum and generalized probabilistic. In particular, our framework specializes to (quantum) nonlocality in the case of Bell scenarios, which arise very naturally from the Foulis-Randall product. In the spirit of CSW, we find close relationships to various invariants studied in combinatorics. The recently proposed Local Orthogonality Principle turns out to be a special case of a general principle for contextuality scenarios related to the Shannon capacity of graphs. Our results imply that it is dominated by a low level of the Navascues-Pironio-Acin hierarchy of semidefinite programs, which we apply to contextuality scenarios. We hope that our approach may also serve as an introduction for combinatorialists to the subject of nonlocality and contextuality. Our conjectures on graphs whose Shannon capacity coincides with their independence number may be of particular interest. |
Author | Leverrier, Anthony Sainz, Ana Belén Acín, Antonio Fritz, Tobias |
Author_xml | – sequence: 1 givenname: Antonio surname: Acín fullname: Acín, Antonio organization: ICFO-Institut de Ciències Fotòniques, ICREA-Institució Catalana de Recerca i Estudis Avançats – sequence: 2 givenname: Tobias surname: Fritz fullname: Fritz, Tobias email: tfritz@perimeterinstitute.ca organization: Perimeter Institute for Theoretical Physics – sequence: 3 givenname: Anthony surname: Leverrier fullname: Leverrier, Anthony organization: INRIA Rocquencourt, Domaine de Voluceau – sequence: 4 givenname: Ana Belén surname: Sainz fullname: Sainz, Ana Belén organization: ICFO-Institut de Ciències Fotòniques |
BackLink | https://hal.science/hal-00931582$$DView record in HAL |
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Keywords | Combinatorial Approach Quantum Correlation Quantum Logic Probabilistic Model Quantum Model |
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Snippet | So far, most of the literature on (quantum) contextuality and the Kochen–Specker theorem seems either to concern particular examples of contextuality, or be... So far, most of the literature on (quantum) contextuality and the Kochen-Specker theorem seems either to concern particular examples of contextuality, or be... |
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SubjectTerms | Classical and Quantum Gravitation Combinatorics Complex Systems Mathematical and Computational Physics Mathematical Physics Mathematics Physics Physics and Astronomy Quantum Physics Relativity Theory Theoretical |
Title | A Combinatorial Approach to Nonlocality and Contextuality |
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