English

$\mathcal{N}=4$ Super-Yang-Mills Correlators at Strong Coupling from String Theory and Localization

High Energy Physics - Theory 2020-01-29 v2

Abstract

We compute 1/λ1/\lambda corrections to the four-point functions of half-BPS operators in SU(N)SU(N) N=4\mathcal{N}=4 super-Yang-Mills theory at large NN and large 't Hooft coupling λ=gYM2N\lambda=g_\text{YM}^2 N using two methods. Firstly, we relate integrals of these correlators to derivatives of the mass deformed S4S^4 free energy, which was computed at leading order in large NN and to all orders in 1/λ1/\lambda using supersymmetric localization. Secondly, we use AdS/CFT to relate these 1/λ1/\lambda corrections to higher derivative corrections to supergravity for scattering amplitudes of Kaluza-Klein scalars in IIB string theory on AdS5×S5AdS_5\times S^5, which in the flat space limit are known from worldsheet calculations. These two methods match at the order corresponding to the tree level R4R^4 interaction in string theory, which provides a precise check of AdS/CFT beyond supergravity, and allow us to derive the holographic correlators to tree level D4R4D^4R^4 order. Combined with constraints from arXiv:1809.10670, our results can be used to derive CFT data to one-loop D4R4D^4R^4 order. Finally, we use AdS/CFT to fix these correlators in the limit where NN is taken to be large while gYMg_{\rm YM} is kept fixed. In this limit, we present a conjecture for the small mass limit of the S4S^4 partition function that includes all instanton corrections and is written in terms of the same Eisenstein series that appear in the study of string theory scattering amplitudes.

Keywords

Cite

@article{arxiv.1902.06263,
  title  = {$\mathcal{N}=4$ Super-Yang-Mills Correlators at Strong Coupling from String Theory and Localization},
  author = {Damon J. Binder and Shai M. Chester and Silviu S. Pufu and Yifan Wang},
  journal= {arXiv preprint arXiv:1902.06263},
  year   = {2020}
}

Comments

33 pages plus appendices, v2 fixed minor typos, version submitted to journal

R2 v1 2026-06-23T07:42:59.853Z