English

Bridging 4D QFTs and 2D VOAs via 3D high-temperature EFTs

High Energy Physics - Theory 2026-05-21 v4 Mathematical Physics math.MP Quantum Algebra Representation Theory

Abstract

The high-temperature limit of the superconformal index, especially on higher sheets, often captures useful universal information about a theory. In 4d N=2\mathcal{N}=2 superconformal field theories with fractional r-charges, there exists a special notion of high-temperature limit on higher sheets that captures data of three-dimensional topological quantum field theories arising from r-twisted circle reduction. These TQFTs are closely tied with the VOA of the 4d SCFT. We study such high-temperature limits. More specifically, we apply Di~Pietro-Komargodski type supersymmetric effective field theory techniques to r-twisted circle reductions of (A1,A2n)(A_1,A_{2n}) Argyres-Douglas theories, leveraging their Maruyoshi-Song Lagrangian with manifest N=1\mathcal{N}=1 supersymmetry. The result on the second sheet is the Gang-Kim-Stubbs family of 3d N=2\mathcal{N}=2 SUSY enhancing rank-00 theories with monopole superpotentials, whose boundary supports the Virasoro minimal model VOAs M(2,2n+3)M(2,2n+3). Upon topological twist, they give non-unitary TQFTs controlled by the M(2,2n+3)M(2,2n+3) modular tensor category (MTC). The high-temperature limit on other sheets yields their unitary or non-unitary Galois conjugates. This opens up the prospect of a broader four-supercharge perspective on the celebrated correspondence between 4d N=2\mathcal{N}=2 SCFTs and 2d VOAs via interpolating 3d EFTs. Several byproducts follow, including a systematic approach to 3d SUSY enhancement from 4d SUSY enhancement, and a 3d QFT handle on Galois orbits of various MTCs associated with 4d N=2\mathcal{N}=2 SCFTs.

Keywords

Cite

@article{arxiv.2409.18130,
  title  = {Bridging 4D QFTs and 2D VOAs via 3D high-temperature EFTs},
  author = {Arash Arabi Ardehali and Mykola Dedushenko and Dongmin Gang and Mikhail Litvinov},
  journal= {arXiv preprint arXiv:2409.18130},
  year   = {2026}
}

Comments

52 pages + appendices. v4: matches published version

R2 v1 2026-06-28T18:58:35.834Z