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Magnetic Quivers from Brane Webs with O5 Planes

High Energy Physics - Theory 2020-08-13 v2

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 N=1\mathcal{N}=1 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 O77^- construction. Further validation is achieved by a derivation of the associated Hasse diagrams. An important class of families considered are the orthogonal exceptional EnE_n families (<n8-\infty < n \leq 8), realised as infinite coupling Higgs branches of Sp(k)\mathrm{Sp}(k) gauge theories with fundamental matter. In particular, the moduli spaces are realised by a novel type of magnetic quivers, called unitary-orthosymplectic quivers.

Keywords

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

R2 v1 2026-06-23T14:44:28.738Z