# Higher Gauge Theories Based on 3-groups

**Authors:** Tijana Radenkovic, Marko Vojinovic

arXiv: 1904.07566 · 2019-11-05

## TL;DR

This paper develops higher gauge theories based on 3-groups, formulating a constrained 3BF action that unifies gravity and matter fields, potentially enabling nonperturbative quantization and offering insights into matter spectrum structure.

## Contribution

It introduces a novel 3-group based gauge framework that unifies gravity and matter fields within a constrained 3BF action, extending the standard model and gravity.

## Key findings

- Constructed constrained 3BF actions for matter-gravity coupling.
- Rewrote the Standard Model plus gravity as a constrained 3BF theory.
- Proposed a new gauge group structure that could unify all fields.

## Abstract

We study the categorical generalizations of a $BF$ theory to $2BF$ and $3BF$ theories, corresponding to $2$-groups and $3$-groups, in the framework of higher gauge theory. In particular, we construct the constrained $3BF$ actions describing the correct dynamics of Yang-Mills, Klein-Gordon, Dirac, Weyl and Majorana fields coupled to Einstein-Cartan gravity. The action is naturally split into a topological sector and a sector with simplicity constraints, adapted to the spinfoam quantization programme. In addition, the structure of the $3$-group gives rise to a novel gauge group which specifies the spectrum of matter fields present in the theory, just like the ordinary gauge group specifies the spectrum of gauge bosons in the Yang-Mills theory. This allows us to rewrite the whole Standard Model coupled to gravity as a constrained $3BF$ action, facilitating the nonperturbative quantization of both gravity and matter fields. Moreover, the presence and the properties of this new gauge group open up a possibility of a nontrivial unification of all fields and a possible explanation of fermion families and all other structure in the matter spectrum of the theory.

## Full text

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## References

25 references — full list in the complete paper: https://tomesphere.com/paper/1904.07566/full.md

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Source: https://tomesphere.com/paper/1904.07566