Abstract
We study the vacuum structure of gauge theories with eight supercharges. It has been recently discovered that in the Higgs branch of 5d and 6d SQCD theories with eight supercharges, the new massless states, arising when the gauge coupling is taken to infinity, can be described in terms of Coulomb branches of 3d mathcal{N}=4 quiver gauge theories. The description of this new phenomenon draws from the ideas discovered in the analysis of nilpotent orbits as Higgs and Coulomb branches of 3d theories and promotes the Higgs mechanism known as the Kraft-Procesi transition to the status of a new operation between quivers. This is the quiver subtraction. This paper establishes this operation formally and examines some immediate consequences. One is the extension of the physical realization of Kraft-Procesi transitions from the classical to the exceptional Lie algebras. Another result is the extension from special nilpotent orbits to non-special ones. One further consequence is the analysis of the effect in 5d mathcal{N}=1 SQCD of integrating out a massive quark while the gauge coupling remains infinite. In general, the subtraction of quivers sheds light on the different types of singularities within the Coulomb branch and the structure of the massless states that arise at those singular points; including the nature of the new Higgs branches that open up. This allows for a systematic analysis of mixed branches of 3d mathcal{N}=4 quivers that do not necessarily have a simple embedding in string theory. The subtraction of two quivers is an extremely simple resource for the theoretical physicist interested in the vacuum structure of gauge theories, and yet its power is so remarkable that is bound to play a crucial role in the coming discoveries of new and exciting physics in 5 and 6 dimensions.
Highlights
JHEP09(2018)008 and Coulomb branches of 3d N = 4 theories3 [25,26,27,28,29,30,31,32,33,34,35,36,37,38,39,40], new discoveries have been possible in the last year
The description of this new phenomenon draws from the ideas discovered in the analysis of nilpotent orbits as Higgs and Coulomb branches of 3d theories and promotes the Higgs mechanism known as the Kraft-Procesi transition to the status of a new operation between quivers
We show how the study of mixed branches and different singularities within Coulomb branches of 3d N = 4 quivers can greatly benefit from its application5
Summary
This section illustrates with an example the idea of quiver subtraction. This is a new way of interpreting the results that in [37] were derived in the context of brane dynamics of Type IIB string theory. 3d mirror dual in the sense of [24] to SQED with 3 electrons It is in this sense that we said before that the set of closures of nilpotent orbits Oλ, generalizes the moduli space of An instantons when λ is different from (2, 1n−1). The appearance of singular transverse slices indicates that there are new massless states along the Coulomb branch at points that are not necessarily the origin of the branch. This generates the possibility for a phase transition to a mixed branch where the non-zero VEVs of matter hypermultiplets are fully defined by the Higgs branch of the subtraction quiver D
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