English

Quantum $\mathfrak{hs}$-Yang-Mills from the IKKT matrix model

High Energy Physics - Theory 2024-05-17 v1

Abstract

We study the one-loop effective action of the higher-spin gauge theory induced by the IKKT matrix model on a M1,3×K\mathcal{M}^{1,3}\times \mathcal{K} background, where M1,3\mathcal{M}^{1,3} is an FLRW cosmological spacetime brane and K\mathcal{K} are compact fuzzy extra dimensions. In particular, we show that all non-abelian (hs\mathfrak{hs}-valued) gauge fields in this model acquire mass via quantum effects, thus avoiding no-go theorems. This leads to a massive non-abelian quantum hs\mathfrak{hs}-Yang-Mills theory, whose detailed structure depends on K\mathcal{K}. The stabilization of K\mathcal{K} at one loop is understood as a result of the coupling between K\mathcal{K} and the U(1)U(1)-flux bundle on space-time. This flux stabilization induces the KK scale into the N=4\mathcal{N} = 4 SYM sector of the model, which break superconformal symmetry.

Keywords

Cite

@article{arxiv.2405.09804,
  title  = {Quantum $\mathfrak{hs}$-Yang-Mills from the IKKT matrix model},
  author = {Harold C. Steinacker and Tung Tran},
  journal= {arXiv preprint arXiv:2405.09804},
  year   = {2024}
}
R2 v1 2026-06-28T16:29:00.298Z