Bootstrapping BPS spectra of 5d/6d field theories
Abstract
We propose a systematic approach to computing the BPS spectra of any 5d/6d supersymmetric quantum field theory in Coulomb phases, which admits either gauge theory descriptions or geometric descriptions, based on the Nakajima-Yoshioka's blowup equations. We provide a significant generalization of the blowup equation approach in terms of both properly quantized magnetic fluxes on the blowup and the effective prepotential for 5d/6d field theories on the Omega background which is uniquely determined by the Chern-Simons couplings on their Coulomb branches. We employ our method to compute BPS spectra of all rank-1 and rank-2 5d Kaluza-Klein (KK) theories descending from 6d superconformal field theories (SCFTs) compactified on a circle with/without twist. We also discuss various 5d SCFTs and KK theories of higher ranks, which include a few exotic cases such as new rank-1 and rank-2 5d SCFTs engineered with frozen singularity as well as the 5d gauge theory currently having neither a brane web nor a smooth shrinkable geometric description. The results serve as non-trivial checks for a large class of non-trivial dualities among 5d theories and also as independent evidences for the existence of certain exotic theories.
Keywords
Cite
@article{arxiv.2101.00023,
title = {Bootstrapping BPS spectra of 5d/6d field theories},
author = {Hee-Cheol Kim and Minsung Kim and Sung-Soo Kim and Ki-Hong Lee},
journal= {arXiv preprint arXiv:2101.00023},
year = {2021}
}
Comments
123 pages, 19 figures. v2 : References added, minor corrections