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Factorised 3d mathcal{N}=4 orthosymplectic quivers

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arxiv 2101.12235 v3 pith:CRHSIRV6 submitted 2021-01-28 hep-th

Factorised 3d mathcal{N}=4 orthosymplectic quivers

classification hep-th
keywords quiversorthosymplecticgaugemathcalseriestheoriesunitarycoulomb
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the moduli space of 3d $\mathcal{N}=4$ quiver gauge theories with unitary, orthogonal and symplectic gauge nodes, that fall into exceptional sequences. We find that both the Higgs and Coulomb branches of the moduli space factorise into decoupled sectors. Each decoupled sector is described by a single quiver gauge theory with only unitary gauge nodes. The orthosymplectic quivers serve as magnetic quivers for 5d $\mathcal{N}=1$ superconformal field theories which can be engineered in type IIB string theories both with and without an O5 plane. We use this point of view to postulate the dual pairs of unitary and orthosymplectic quivers by deriving them as magnetic quivers of the 5d theory. We use this correspondence to conjecture exact highest weight generating functions for the Coulomb branch Hilbert series of the orthosymplectic quivers, and provide tests of these results by directly computing the Hilbert series for the orthosymplectic quivers in a series expansion.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Orthosymplectic Chern-Simons Matter Theories: Global Forms, Dualities, and Vacua

    hep-th 2025-09 conditional novelty 7.0

    A magnetic quiver framework is introduced to extract maximal branches and global forms of 3d orthosymplectic Chern-Simons matter theories from brane configurations, with global data fixed via indices and Hilbert series.

  2. Bootstrapping mirror pairs: The beginning of the end

    hep-th 2025-10 conditional novelty 6.0

    A growth-and-fusion algorithm completes a quartet of quiver operations that bootstrap 3d mirror pairs, demonstrated on a new family of circular 'sunshine' quivers.