English

Proving the 6d Cardy Formula and Matching Global Gravitational Anomalies

High Energy Physics - Theory 2020-11-10 v2

Abstract

A Cardy formula for 6d superconformal field theories (SCFTs) conjectured by Di Pietro and Komargodski in [1] governs the universal behavior of the supersymmetric partition function on Sβ1×S5S^1_\beta \times S^5 in the limit of small β\beta and fixed squashing of the S5S^5. For a general 6d SCFT, we study its 5d effective action, which is dominated by the supersymmetric completions of perturbatively gauge-invariant Chern-Simons terms in the small β\beta limit. Explicitly evaluating these supersymmetric completions gives the precise squashing dependence in the Cardy formula. For SCFTs with a pure Higgs branch (also known as very Higgsable SCFTs), we determine the Chern-Simons levels by explicitly going onto the Higgs branch and integrating out the Kaluza-Klein modes of the 6d fields on Sβ1S^1_\beta. We then discuss tensor branch flows, where an apparent mismatch between the formula in [1] and the free field answer requires an additional contribution from BPS strings. This "missing contribution" is further sharpened by the relation between the fractional part of the Chern-Simons levels and the (mixed) global gravitational anomalies of the 6d SCFT. We also comment on the Cardy formula for 4d N=2\mathcal{N}=2 SCFTs in relation to Higgs branch and Coulomb branch flows.

Keywords

Cite

@article{arxiv.1910.10151,
  title  = {Proving the 6d Cardy Formula and Matching Global Gravitational Anomalies},
  author = {Chi-Ming Chang and Martin Fluder and Ying-Hsuan Lin and Yifan Wang},
  journal= {arXiv preprint arXiv:1910.10151},
  year   = {2020}
}

Comments

58 pages. v2: typos corrected, references added