English

Complex crystallographic reflection groups and Seiberg-Witten integrable systems: rank 1 case

High Energy Physics - Theory 2026-03-17 v3 Mathematical Physics math.MP Representation Theory Exactly Solvable and Integrable Systems

Abstract

We consider generalisations of the elliptic Calogero--Moser systems associated to complex crystallographic groups in accordance to [1]. In our previous work [2], we proposed these systems as candidates for Seiberg--Witten integrable systems of certain SCFTs. Here we examine that proposal for complex crystallographic groups of rank one. Geometrically, this means considering elliptic curves T2T^2 with Zm\mathbb{Z}_m-symmetries, m=2,3,4,6m=2,3,4,6, and Poisson deformations of the orbifolds (T2×C)/Zm(T^2\times\mathbb{C})/\mathbb{Z}_m. The m=2m=2 case was studied in [2], while m=3,4,6m=3,4,6 correspond to Seiberg--Witten integrable systems for the rank 1 Minahan--Nemeshansky SCFTs of type E6,7,8E_{6,7,8}. This allows us to describe the corresponding elliptic fibrations and the Seiberg--Witten differential in a compact elegant form. This approach also produces quantum spectral curves for these SCFTs, which are given by Fuchsian ODEs with special properties.

Keywords

Cite

@article{arxiv.2309.12760,
  title  = {Complex crystallographic reflection groups and Seiberg-Witten integrable systems: rank 1 case},
  author = {Philip C. Argyres and Oleg Chalykh and Yongchao Lü},
  journal= {arXiv preprint arXiv:2309.12760},
  year   = {2026}
}
R2 v1 2026-06-28T12:29:17.834Z