Factorised 3d N = 4 orthosymplectic quivers

A bstract We study the moduli space of 3d 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 b...

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Veröffentlicht in:The journal of high energy physics 2021-05, Vol.2021 (5)
Hauptverfasser: Akhond, Mohammad, Carta, Federico, Dwivedi, Siddharth, Hayashi, Hirotaka, Kim, Sung-Soo, Yagi, Futoshi
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container_issue 5
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container_title The journal of high energy physics
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creator Akhond, Mohammad
Carta, Federico
Dwivedi, Siddharth
Hayashi, Hirotaka
Kim, Sung-Soo
Yagi, Futoshi
description A bstract We study the moduli space of 3d 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 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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subjects Classical and Quantum Gravitation
Elementary Particles
Gauge theory
High energy physics
Nodes
Physics
Physics and Astronomy
Quantum Field Theories
Quantum Field Theory
Quantum Physics
Regular Article - Theoretical Physics
Relativity Theory
Sequences
Series expansion
String Theory
Symmetry
title Factorised 3d N = 4 orthosymplectic quivers
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