$T\overline{T}$-deformed free energy of the Airy model
Abstract
Sharpening the holographic correspondence of Jackiw-Teitelboim (JT) gravity and its dual matrix model description at a finite radial cutoff through the deformation is of interest. To proceed, we simplify the problem by considering the Airy model and deform Airy correlators in the same way as in -deformed JT gravity. We use those correlators to compute the annealed and quenched free energies for both and from an integral representation of the replica trick. At the leading order in and low temperatures, we confirm that the genus-zero quenched free energy monotonically decreases as a function of temperature when perturbation theory is valid. We then study the all-genus quenched free energy at low temperatures, where we discover and discuss subtleties due to non-perturbative effects in the Airy model, as well as the contributions from the non-perturbative branch under the deformation.
Cite
@article{arxiv.2202.03454,
title = {$T\overline{T}$-deformed free energy of the Airy model},
author = {Stephen Ebert and Hao-Yu Sun and Zhengdi Sun},
journal= {arXiv preprint arXiv:2202.03454},
year = {2022}
}
Comments
47 Pages, 16 Figures