Entanglement of Sections: The pushout of entangled and parameterized quantum information

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Main Authors: Sati, Hisham, Schreiber, Urs
Format: Preprint
Published: 2023
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author Sati, Hisham
Schreiber, Urs
author_facet Sati, Hisham
Schreiber, Urs
contents A question raised by Freedman & Hastings (2023) still stands: To produce a mathematical theory that would unify quantum entanglement/tensor-structure with parameterized/bundle-structure via their amalgamation (a hypothetical pushout) along bare quantum (information) theory -- a question motivated by the role that vector bundles of spaces of quantum states play in the K-theoretic classification of topological phases of matter. Here we produce a possible answer to this question. To that end, first we make precise a form of the relevant pushout diagram in monoidal category theory. With the question thus formalized, we proceed to compute this pushout and prove that it gives what is known as the external tensor product on vector bundles/K-classes, or rather on flat such bundles (flat K-theory), i.e., those equipped with monodromy encoding topological Berry phases. The external tensor product was recently highlighted in the context of topological phases of matter and through our work in quantum programming theory but has not otherwise found due attention in quantum theory yet.
format Preprint
id arxiv_https___arxiv_org_abs_2309_07245
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Entanglement of Sections: The pushout of entangled and parameterized quantum information
Sati, Hisham
Schreiber, Urs
Quantum Physics
Mathematical Physics
Algebraic Topology
Category Theory
Primary: 81P45, 81P10, 18M40, 81P40, Secondary: 18M05, 18A30
A question raised by Freedman & Hastings (2023) still stands: To produce a mathematical theory that would unify quantum entanglement/tensor-structure with parameterized/bundle-structure via their amalgamation (a hypothetical pushout) along bare quantum (information) theory -- a question motivated by the role that vector bundles of spaces of quantum states play in the K-theoretic classification of topological phases of matter. Here we produce a possible answer to this question. To that end, first we make precise a form of the relevant pushout diagram in monoidal category theory. With the question thus formalized, we proceed to compute this pushout and prove that it gives what is known as the external tensor product on vector bundles/K-classes, or rather on flat such bundles (flat K-theory), i.e., those equipped with monodromy encoding topological Berry phases. The external tensor product was recently highlighted in the context of topological phases of matter and through our work in quantum programming theory but has not otherwise found due attention in quantum theory yet.
title Entanglement of Sections: The pushout of entangled and parameterized quantum information
topic Quantum Physics
Mathematical Physics
Algebraic Topology
Category Theory
Primary: 81P45, 81P10, 18M40, 81P40, Secondary: 18M05, 18A30
url https://arxiv.org/abs/2309.07245