$T\bar{T}$ in JT Gravity and BF Gauge Theory
Abstract
JT gravity has a first-order formulation as a two-dimensional BF theory, which can be viewed as the dimensional reduction of the Chern-Simons description of gravity. We consider -type deformations of the -dimensional dual to this BF theory and interpret the deformation as a modification of the BF theory boundary conditions. The fundamental observables in this deformed BF theory, and in its Chern-Simons lift, are Wilson lines and loops. In the Chern-Simons setting, we study modifications to correlators involving boundary-anchored Wilson lines which are induced by a deformation on the boundary; results are presented at both the classical level (using modified boundary conditions) and the quantum-mechanical level (using conformal perturbation theory). Finally, we calculate the analogous deformed Wilson line correlators in BF theory below the Hagedorn temperature where the principal series dominates over the discrete series.
Keywords
Cite
@article{arxiv.2205.07817,
title = {$T\bar{T}$ in JT Gravity and BF Gauge Theory},
author = {Stephen Ebert and Christian Ferko and Hao-Yu Sun and Zhengdi Sun},
journal= {arXiv preprint arXiv:2205.07817},
year = {2022}
}
Comments
92 pages