English

$\mathcal{N}=2$ supersymmetric Yang-Mills thermodynamics from effective field theory

High Energy Physics - Theory 2026-07-26 v1

Abstract

We compute the weak-coupling free energy density of pure four-dimensional N=2\mathcal{N}=2 supersymmetric Yang-Mills (SYM) theory through second order in the 't Hooft coupling λ\lambda at finite temperature using effective-field-theory methods. The contribution from the hard scale TT is obtained from massless three-loop vacuum diagrams in the full theory, and that from the electric scale λT\sqrt{\lambda}\,T from a two-loop calculation in the dimensionally reduced three-dimensional effective theory. In contrast to N=4\mathcal{N}=4 SYM, the theory is asymptotically free: the coupling-renormalization counterterm, together with the EFT unit-operator counterterm, cancels all 1/ϵ1/\epsilon poles. The remaining renormalization-scale dependence is fixed by the one-loop beta function. The expansion reproduces earlier results through order λ3/2\lambda^{3/2}, and the order-λ2\lambda^2 term is new.

Keywords

Cite

@article{arxiv.2607.23620,
  title  = {$\mathcal{N}=2$ supersymmetric Yang-Mills thermodynamics from effective field theory},
  author = {Ubaid Tantary and Qianqian Du},
  journal= {arXiv preprint arXiv:2607.23620},
  year   = {2026}
}

Comments

13 pages, 9 figures. This work extends the finite-temperature N=4 SYM calculations of arXiv:2105.02101 and arXiv:2111.12160 to pure N=2 SYM. Reproduced diagram figures are identified and attributed in their captions