English

Extremal Correlators in the AdS/CFT Correspondence

High Energy Physics - Theory 2016-11-23 v1

Abstract

The non-renormalization of the 3-point functions trXk1trXk2trXk3tr X^{k_1} tr X^{k_2} tr X^{k_3} of chiral primary operators in N=4 super-Yang-Mills theory is one of the most striking facts to emerge from the AdS/CFT correspondence. A two-fold puzzle appears in the extremal case, e.g. k_1 = k_2 + k_3. First, the supergravity calculation involves analytic continuation in the k_i variables to define the product of a vanishing bulk coupling and an infinite integral over AdS. Second, extremal correlators are uniquely sensitive to mixing of the single-trace operators trXktr X^k with protected multi-trace operators in the same representation of SU(4). We show that the calculation of extremal correlators from supergravity is subject to the same subtlety of regularization known for the 2-point functions, and we present a careful method which justifies the analytic continuation and shows that supergravity fields couple to single traces without admixture. We also study extremal n-point functions of chiral primary operators, and argue that Type IIB supergravity requires that their space-time form is a product of n-1 two-point functions (as in the free field approximation) multiplied by a non-renormalized coefficient. This non-renormalization property of extremal n-point functions is a new prediction of the AdS/CFT correspondence. As a byproduct of this work we obtain the cubic couplings tϕϕt \phi \phi and sϕϕs \phi \phi of fields in the dilaton and 5-sphere graviton towers of Type IIB supergravity on AdS5×S5AdS_5 \times S^5.

Keywords

Cite

@article{arxiv.hep-th/9908160,
  title  = {Extremal Correlators in the AdS/CFT Correspondence},
  author = {E. D'Hoker and D. Z. Freedman and S. D. Mathur and A. Matusis and L. Rastelli},
  journal= {arXiv preprint arXiv:hep-th/9908160},
  year   = {2016}
}

Comments

26 pages, LateX, no figures

R2 v1 2026-07-22T16:16:59.326Z