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Three Hopf algebras from number theory, physics & topology, and their common background II: general categorical formulation

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posted on 2021-01-08, 11:42 authored by Imma Gálvez-Carrillo, Ralph M Kaufmann, Andrew Tonks
We consider three a priori totally different setups for Hopf algebras from number theory, mathematical physics and algebraic topology. These are the Hopf algebra of Goncharov for multiple zeta values, that of Connes-Kreimer for renormalization, and a Hopf algebra constructed by Baues to study double loop spaces. We show that these examples can be successively unified by considering simplicial objects, co-operads with multiplication and Feynman categories at the ultimate level. These considerations open the door to new constructions and reinterpretations of known constructions in a large common framework which is presented step-by-step with examples throughout. In this second part of two papers, we give the general categorical formulation.

History

Citation

Communications in Number Theory and Physics Volume 14 (2020), Number 1, pp. 91-169

Author affiliation

Department of Mathematics

Version

  • AM (Accepted Manuscript)

Published in

Communications in Number Theory and Physics

Volume

14

Issue

1

Pagination

91 - 169

Publisher

International Press of Boston

issn

1931-4523

eissn

1931-4531

Copyright date

2020

Notes

This is the second part of the final version of arXiv 1607.00196. The first part is available as the replacement of arXiv 1607.00196

Language

en

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