1/2 BPS Wilson loops in non-conformal N = 2 gauge theories and localization: a three-loop analysis
Abstract
We study the 1/2 BPS circular Wilson loop in four-dimensional SU(N), SYM theories with massless hypermultiplets and non-vanishing -function. Using super-symmetric localization on , we map the path-integral associated with this observable onto an interacting matrix model. Despite the breaking of conformal symmetry at the quantum level, we show that, within a specific regime, the matrix model predictions remain consistent with the perturbative results in flat space up to order . At this order, our analysis reveals that the reorganization of Feynman diagrams based on the matrix model interaction potential, widely tested in (super)conformal models, also applies to these non-conformal set-ups and is realized by interference mechanisms.
Cite
@article{arxiv.2410.14847,
title = {1/2 BPS Wilson loops in non-conformal N = 2 gauge theories and localization: a three-loop analysis},
author = {Marco Billo' and Luca Griguolo and Alessandro Testa},
journal= {arXiv preprint arXiv:2410.14847},
year = {2024}
}
Comments
56 pages