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Entanglement Suppression and Emergent Symmetries of Strong Interactions
Entanglement suppression in the strong-interaction S matrix is shown to be correlated with approximate spin-flavor symmetries that are observed in low-energy baryon interactions, the Wigner SU(4) symmetry for two flavors and an SU(16) symmetry for three flavors. We conjecture that dynamical entangle...
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Published in: | Physical review letters 2019-03, Vol.122 (10), p.102001-102001, Article 102001 |
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container_end_page | 102001 |
container_issue | 10 |
container_start_page | 102001 |
container_title | Physical review letters |
container_volume | 122 |
creator | Beane, Silas R Kaplan, David B Klco, Natalie Savage, Martin J |
description | Entanglement suppression in the strong-interaction S matrix is shown to be correlated with approximate spin-flavor symmetries that are observed in low-energy baryon interactions, the Wigner SU(4) symmetry for two flavors and an SU(16) symmetry for three flavors. We conjecture that dynamical entanglement suppression is a property of the strong interactions in the infrared, giving rise to these emergent symmetries and providing powerful constraints that predict the nature of nuclear and hypernuclear forces in dense matter. |
doi_str_mv | 10.1103/PhysRevLett.122.102001 |
format | article |
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source | American Physical Society:Jisc Collections:APS Read and Publish 2023-2025 (reading list) |
subjects | Entanglement Flavors Mathematical analysis Matrix methods Symmetry |
title | Entanglement Suppression and Emergent Symmetries of Strong Interactions |
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