English

Field Theory of Interacting Boundary Gravitons

High Energy Physics - Theory 2022-08-31 v2 General Relativity and Quantum Cosmology

Abstract

Pure three-dimensional gravity is a renormalizable theory with two free parameters labelled by GG and Λ\Lambda. As a consequence, correlation functions of the boundary stress tensor in AdS3_3 are uniquely fixed in terms of one dimensionless parameter, which is the central charge of the Virasoro algebra. The same argument implies that AdS3_3 gravity at a finite radial cutoff is a renormalizable theory, but now with one additional parameter corresponding to the cutoff location. This theory is conjecturally dual to a TTT\overline{T}-deformed CFT, assuming that such theories actually exist. To elucidate this, we study the quantum theory of boundary gravitons living on a cutoff planar boundary and the associated correlation functions of the boundary stress tensor. We compute stress tensor correlation functions to two-loop order (GG being the loop counting parameter), extending existing tree level results. This is made feasible by the fact that the boundary graviton action simplifies greatly upon making a judicious field redefinition, turning into the Nambu-Goto action. After imposing Lorentz invariance, the correlators at this order are found to be unambiguous up to a single undetermined renormalization parameter.

Keywords

Cite

@article{arxiv.2201.01780,
  title  = {Field Theory of Interacting Boundary Gravitons},
  author = {Stephen Ebert and Eliot Hijano and Per Kraus and Ruben Monten and Richard M. Myers},
  journal= {arXiv preprint arXiv:2201.01780},
  year   = {2022}
}

Comments

71 pages, 1 figure, typos corrected and clarifications added in response to the referees' questions