On s-confinement in 3d N=2 gauge theories with anti-symmetric tensors

Abstract

We elaborate on s-confinement phases in three-dimensional N=2 supersymmetric gauge theory, especially focusing on the SU(N) and USp(2N) gauge theories with anti-symmetric tensors and (anti-)fundamental matters. This will elucidate a quantum structure of the Coulomb moduli space of vacua. We stress the importance of so-called dressed Coulomb branch operators for describing these s-confinement phases. The 3d s-confinement phases are highly richer than the 4d ones since there is no chiral anomaly constraint on the matter contents.

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