Any Physical Theory of Nature Must Be Boundlessly Multipartite Nonlocal
We introduce the class of Genuinely Local Operation and Shared Randomness (LOSR) Multipartite Nonlocal correlations, that is, correlations between N parties that cannot be obtained from unlimited shared randomness supplemented by any composition of (N-1)-shared causal Generalized-Probabilistic-Theor...
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Published in | arXiv.org |
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Main Authors | , , |
Format | Paper Journal Article |
Language | English |
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11.11.2021
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ISSN | 2331-8422 |
DOI | 10.48550/arxiv.2105.09380 |
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Abstract | We introduce the class of Genuinely Local Operation and Shared Randomness (LOSR) Multipartite Nonlocal correlations, that is, correlations between N parties that cannot be obtained from unlimited shared randomness supplemented by any composition of (N-1)-shared causal Generalized-Probabilistic-Theory (GPT) resources. We then show that noisy N-partite GHZ quantum states as well as the 3-partite W quantum state can produce such correlations. This proves, if the operational predictions of quantum theory are correct, that Nature's nonlocality must be boundlessly multipartite in any causal GPT. We develop a computational method which certifies that a noisy N=3 GHZ quantum state with fidelity 85 percent satisfies this property, making an experimental demonstration of our results within reach. We motivate our definition and contrast it with preexisting notions of genuine multipartite nonlocality. This work extends a more compact parallel letter [Phys. Rev. Lett. 127, 200401 (2021)] on the same subject and provides all the required technical proofs. |
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AbstractList | Phys. Rev. A 104, 052207 (2021) We introduce the class of Genuinely Local Operation and Shared Randomness
(LOSR) Multipartite Nonlocal correlations, that is, correlations between N
parties that cannot be obtained from unlimited shared randomness supplemented
by any composition of (N-1)-shared causal Generalized-Probabilistic-Theory
(GPT) resources. We then show that noisy N-partite GHZ quantum states as well
as the 3-partite W quantum state can produce such correlations. This proves, if
the operational predictions of quantum theory are correct, that Nature's
nonlocality must be boundlessly multipartite in any causal GPT. We develop a
computational method which certifies that a noisy N=3 GHZ quantum state with
fidelity 85 percent satisfies this property, making an experimental
demonstration of our results within reach. We motivate our definition and
contrast it with preexisting notions of genuine multipartite nonlocality. This
work extends a more compact parallel letter [Phys. Rev. Lett. 127, 200401
(2021)] on the same subject and provides all the required technical proofs. We introduce the class of Genuinely Local Operation and Shared Randomness (LOSR) Multipartite Nonlocal correlations, that is, correlations between N parties that cannot be obtained from unlimited shared randomness supplemented by any composition of (N-1)-shared causal Generalized-Probabilistic-Theory (GPT) resources. We then show that noisy N-partite GHZ quantum states as well as the 3-partite W quantum state can produce such correlations. This proves, if the operational predictions of quantum theory are correct, that Nature's nonlocality must be boundlessly multipartite in any causal GPT. We develop a computational method which certifies that a noisy N=3 GHZ quantum state with fidelity 85 percent satisfies this property, making an experimental demonstration of our results within reach. We motivate our definition and contrast it with preexisting notions of genuine multipartite nonlocality. This work extends a more compact parallel letter [Phys. Rev. Lett. 127, 200401 (2021)] on the same subject and provides all the required technical proofs. |
Author | Coiteux-Roy, Xavier Wolfe, Elie Marc-Olivier Renou |
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BackLink | https://doi.org/10.1103/PhysRevA.104.052207$$DView published paper (Access to full text may be restricted) https://doi.org/10.48550/arXiv.2105.09380$$DView paper in arXiv |
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DOI | 10.48550/arxiv.2105.09380 |
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Snippet | We introduce the class of Genuinely Local Operation and Shared Randomness (LOSR) Multipartite Nonlocal correlations, that is, correlations between N parties... Phys. Rev. A 104, 052207 (2021) We introduce the class of Genuinely Local Operation and Shared Randomness (LOSR) Multipartite Nonlocal correlations, that is,... |
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Title | Any Physical Theory of Nature Must Be Boundlessly Multipartite Nonlocal |
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