Conformal Boundary Conditions from Cutoff AdS$_3$
Abstract
We construct a particular flow in the space of 2D Euclidean QFTs on a torus, which we argue is dual to a class of solutions in 3D Euclidean gravity with conformal boundary conditions. This new flow comes from a Legendre transform of the kernel which implements the deformation, and is motivated by the need for boundary conditions in Euclidean gravity to be elliptic, i.e. that they have well-defined propagators for metric fluctuations. We demonstrate equivalence between our flow equation and variants of the Wheeler de-Witt equation for a torus universe in the so-called Constant Mean Curvature (CMC) slicing. We derive a kernel for the flow, and we compute the corresponding ground state energy in the low-temperature limit. Once deformation parameters are fixed, the existence of the ground state is independent of the initial data, provided the seed theory is a CFT. The high-temperature density of states has Cardy-like behavior, rather than the Hagedorn growth characteristic of -deformed theories.
Cite
@article{arxiv.2010.08504,
title = {Conformal Boundary Conditions from Cutoff AdS$_3$},
author = {Evan Coleman and Vasudev Shyam},
journal= {arXiv preprint arXiv:2010.08504},
year = {2021}
}
Comments
17 pages, 0 figures