English

$T \bar{T}$ deformation of the Ising model and its ultraviolet completion

High Energy Physics - Theory 2022-11-18 v2 Statistical Mechanics Mathematical Physics math.MP

Abstract

Pure TTˉT\bar{T} deformations of conformal field theories are generally asymptotically incomplete in the ultra-violet (UV) due to square-root singularities in the ground state energy on a cylinder of circumference RR, such that the theory is ill-defined for distances shorter than some critical RR_*. In this article we show how a theory can be completed if one includes an infinite number of additional irrelevant perturbations. This is fully demonstrated in the case of the Ising model at cIR=1/2c_{IR}= 1/2 in the infra-red (IR), where we find two completions with central charges cUV=3/2c_{UV} = 3/2 and cUV=7/10c_{UV} = 7/10, the latter being the tri-critical Ising model. Both of these UV completions have N=1{\cal N}=1 supersymmetry which is broken in the renormalization group flow to low energies. We also consider multiple TTˉT\bar{T} deformations of a free massless boson, where we cannot find a UV completion that is consistent with the c-theorem. For negative coupling gg, which violates the c-theorem, in both cases we find cUV=cIRc_{UV} = -c_{IR} as gg \to -\infty. Finally we also study pure TTˉT\bar{T} deformations of the off-critical Ising model.

Keywords

Cite

@article{arxiv.2107.02230,
  title  = {$T \bar{T}$ deformation of the Ising model and its ultraviolet completion},
  author = {André LeClair},
  journal= {arXiv preprint arXiv:2107.02230},
  year   = {2022}
}

Comments

14 pages, 2 figures