English

The $\textrm{T}\bar{\textrm{T}}$ perturbation and its geometric interpretation

High Energy Physics - Theory 2019-03-27 v3 Mathematical Physics math.MP

Abstract

Starting from the recently-discovered TTˉ\textrm{T}\bar{\textrm{T}}-perturbed Lagrangians, we prove that the deformed solutions to the classical EoMs for bosonic field theories are equivalent to the unperturbed ones but for a specific field-dependent local change of coordinates. This surprising geometric outcome is fully consistent with the identification of TTˉ\textrm{T}\bar{\textrm{T}}-deformed 2D quantum field theories as topological JT gravity coupled to generic matter fields. Although our conclusion is valid for generic interacting potentials, it first emerged from a detailed study of the sine-Gordon model and in particular from the fact that solitonic pseudo-spherical surfaces embedded in R3\mathbb R^3 are left invariant by the deformation. Analytic and numerical results concerning the perturbation of specific sine-Gordon soliton solutions are presented.

Keywords

Cite

@article{arxiv.1809.09593,
  title  = {The $\textrm{T}\bar{\textrm{T}}$ perturbation and its geometric interpretation},
  author = {Riccardo Conti and Stefano Negro and Roberto Tateo},
  journal= {arXiv preprint arXiv:1809.09593},
  year   = {2019}
}

Comments

v2 : Expanded version with new comments, numerical results and 16 figures added. Minor typos corrected. Extra references added. 25 pages. 4 figures v3 : JHEP version. Section 6 added. Minor typos corrected. Extra reference added. 30 pages. 5 figures

R2 v1 2026-06-23T04:18:05.100Z