Taming Defects in $\mathcal{N}=4$ Super-Yang-Mills
Abstract
We study correlation functions involving extended defect operators in the four-dimensional super-Yang-Mills (SYM). The main tool is supersymmetric localization with respect to the supercharge introduced in \cite{Pestun:2009nn} which computes observables in the -cohomology. We classify general defects of different codimensions in the SYM that belong to the -cohomology, which form -BPS defect networks. By performing the -localization of the SYM on the four-dimensional hemisphere, we discover a novel defect-Yang-Mills (dYM) theory on a submanifold given by the two-dimensional hemisphere and described by (constrained) two-dimensional Yang-Mills coupled to topological quantum mechanics on the boundary circle. This also generalizes to interface defects in SYM by the folding trick. We provide explicit dictionary between defect observables in the SYM and those in the dYM, which enables extraction of general -BPS defect network observables of the SYM from two-dimensional gauge theory and matrix model techniques. Applied to the D5 brane interface in the SYM, we explicitly determine a set of defect correlation functions in the large limit and obtain precise matching with strong coupling results from IIB supergravity on .
Cite
@article{arxiv.2003.11016,
title = {Taming Defects in $\mathcal{N}=4$ Super-Yang-Mills},
author = {Yifan Wang},
journal= {arXiv preprint arXiv:2003.11016},
year = {2020}
}
Comments
91 pages, 2 figures; v3: minor corrections and more references added