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Model-Dependence of Minimal-Twist OPEs in $d>2$ Holographic CFTs

High Energy Physics - Theory 2020-12-02 v1

Abstract

Following recent work on heavy-light correlators in higher-dimensional conformal field theories (CFTs) with a large central charge CTC_T, we clarify the properties of stress tensor composite primary operators of minimal twist, [Tm][T^m], using arguments in both CFT and gravity. We provide an efficient proof that the three-point coupling OLOL[Tm]\langle \mathcal{O}_L\mathcal{O}_L [T^m]\rangle, where OL\mathcal{O}_L is any light primary operator, is independent of the purely gravitational action. Next, we consider corrections to this coupling due to additional interactions in AdS effective field theory and the corresponding dual CFT. When the CFT contains a non-zero three-point coupling TTOL\langle TT \mathcal{O}_L\rangle, the three-point coupling OLOL[T2]\langle \mathcal{O}_L\mathcal{O}_L [T^2]\rangle is modified at large CTC_T if TTOLCT\langle TT\mathcal{O}_L \rangle \sim \sqrt{C_T}. This scaling is obeyed by the dilaton, by Kaluza-Klein modes of prototypical supergravity compactifications, and by scalars in stress tensor multiplets of supersymmetric CFTs. Quartic derivative interactions involving the graviton and the light probe field dual to OL\mathcal{O}_L can also modify the minimal-twist couplings; these local interactions may be generated by integrating out a spin-2\ell \geq 2 bulk field at tree level, or any spin \ell at loop level. These results show how the minimal-twist OPE coefficients can depend on the higher-spin gap scale, even perturbatively.

Keywords

Cite

@article{arxiv.2007.07382,
  title  = {Model-Dependence of Minimal-Twist OPEs in $d>2$ Holographic CFTs},
  author = {A. Liam Fitzpatrick and Kuo-Wei Huang and David Meltzer and Eric Perlmutter and David Simmons-Duffin},
  journal= {arXiv preprint arXiv:2007.07382},
  year   = {2020}
}

Comments

25+10 pages