Higgs Bundles for M-theory on $G_2$-Manifolds
Abstract
M-theory compactified on -holonomy manifolds results in 4d supersymmetric gauge theories coupled to gravity. In this paper we focus on the gauge sector of such compactifications by studying the Higgs bundle obtained from a partially twisted 7d super Yang-Mills theory on a supersymmetric three-cycle . We derive the BPS equations and find the massless spectrum for both abelian and non-abelian gauge groups in 4d. The mathematical tool that allows us to determine the spectrum is Morse theory, and more generally Morse-Bott theory. The latter generalization allows us to make contact with twisted connected sum (TCS) -manifolds, which form the largest class of examples of compact -manifolds. M-theory on TCS -manifolds is known to result in a non-chiral 4d spectrum. We determine the Higgs bundle for this class of -manifolds and provide a prescription for how to engineer singular transitions to models that have chiral matter in 4d.
Keywords
Cite
@article{arxiv.1812.06072,
title = {Higgs Bundles for M-theory on $G_2$-Manifolds},
author = {Andreas P. Braun and Sebastjan Cizel and Max Hubner and Sakura Schafer-Nameki},
journal= {arXiv preprint arXiv:1812.06072},
year = {2019}
}
Comments
82 pages, 16 figures; v2: ref added, typos fixed