Top Down Approach to Topological Duality Defects
Abstract
Topological duality defects arise as codimension one generalized symmetry operators in quantum field theories (QFTs) with a duality symmetry. Recent investigations have shown that in the case of 4D Super Yang-Mills (SYM) theory, an appropriate choice of (complexified) gauge coupling and global form of the gauge group can lead to a rather rich fusion algebra for the associated defects, leading to examples of non-invertible symmetries. In this work we present a top down construction of these duality defects which generalizes to QFTs with lower supersymmetry, where other 0-form symmetries are often present. We realize the QFTs of interest via D3-branes probing a Calabi-Yau threefold cone with an isolated singularity at the tip of the cone. The IIB duality group descends to dualities of the 4D worldvolume theory. Non-trivial codimension one topological interfaces arise from configurations of 7-branes "at infinity" which implement a suitable transformation when they are crossed. Reduction on the boundary topology results in a 5D symmetry TFT. Different realizations of duality defects, such as the gauging of 1-form symmetries with certain mixed anomalies and half-space gauging constructions, simply amount to distinct choices of where to place the branch cuts in the 5D bulk.
Cite
@article{arxiv.2212.09743,
title = {Top Down Approach to Topological Duality Defects},
author = {Jonathan J. Heckman and Max Hubner and Ethan Torres and Xingyang Yu and Hao Y. Zhang},
journal= {arXiv preprint arXiv:2212.09743},
year = {2024}
}
Comments
v4: 62 pages, 22 figures, clarifications added, typos corrected