Magnetic Quivers from Brane Webs with O5 Planes
Abstract
Magnetic quivers have led to significant progress in the understanding of gauge theories with 8 supercharges at UV fixed points. For a given low-energy gauge theory realised via a Type II brane construction, there exist magnetic quivers for the Higgs branches at finite and infinite gauge coupling. Comparing these moduli spaces allows to study the non-perturbative effects when transitioning to the fixed point. For 5d SQCD, 5-brane webs have been an important tool for deriving magnetic quivers. In this work, the emphasis is placed on 5-brane webs with orientifold 5-planes which give rise to 5d theories with orthogonal or symplectic gauge groups. For this set-up, the magnetic quiver prescription is derived and contrasted against a unitary magnetic quiver description extracted from an O construction. Further validation is achieved by a derivation of the associated Hasse diagrams. An important class of families considered are the orthogonal exceptional families (), realised as infinite coupling Higgs branches of gauge theories with fundamental matter. In particular, the moduli spaces are realised by a novel type of magnetic quivers, called unitary-orthosymplectic quivers.
Cite
@article{arxiv.2004.04082,
title = {Magnetic Quivers from Brane Webs with O5 Planes},
author = {Antoine Bourget and Julius F. Grimminger and Amihay Hanany and Marcus Sperling and Zhenghao Zhong},
journal= {arXiv preprint arXiv:2004.04082},
year = {2020}
}
Comments
v2: 83 pages, 13 tables, matches JHEP version