English

Topologically Massive Gravity and Galilean Conformal Algebra: A Study of Correlation Functions

High Energy Physics - Theory 2011-03-18 v1

Abstract

The Galilean Conformal Algebra (GCA) arises from the relativistic conformal algebra in the non-relativistic limit. In two dimensions, one can view it as a limit of linear combinations of the two copies Virasoro algebra. Recently, it has been argued that Topologically Massive Gravity (TMG) realizes the quantum 2d GCA in a particular scaling limit of the gravitational Chern-Simons term. To add strength to this claim, we demonstrate a matching of correlation functions on both sides of this correspondence. A priori looking for spatially dependent correlators seems to force us to deal with high spin operators in the bulk. We get around this difficulty by constructing the non-relativistic Energy-Momentum tensor and considering its correlation functions. On the gravity side, our analysis makes heavy use of recent results of Holographic Renormalization in Topologically Massive Gravity.

Keywords

Cite

@article{arxiv.1012.3316,
  title  = {Topologically Massive Gravity and Galilean Conformal Algebra: A Study of Correlation Functions},
  author = {Arjun Bagchi},
  journal= {arXiv preprint arXiv:1012.3316},
  year   = {2011}
}

Comments

18 pages

R2 v1 2026-06-21T16:59:04.245Z