English

$T\bar T$-deformed Fermionic Theories Revisited

High Energy Physics - Theory 2021-08-18 v2 Quantum Physics

Abstract

We revisit TTˉT\bar T deformations of d=2d=2 theories with fermions with a view toward the quantization. As a simple illustration, we compute the deformed Dirac bracket for a Majorana doublet and confirm the known eigenvalue flows perturbatively. We mostly consider those TTˉT\bar T theories that can be reconstructed from string-like theories upon integrating out the worldsheet metric. After a quick overview of how this works when we add NSR-like or GS-like fermions, we obtain a known non-supersymmetric TTˉT\bar T deformation of a \cN=(1,1)\cN=(1,1) theory from the latter, based on the Noether energy-momentum. This worldsheet reconstruction implies that the latter is actually a supersymmetric subsector of a d=3d=3 GS-like model, implying hidden supercharges, which we do construct explicitly. This brings us to ask about different TTˉT\bar T deformations, such as manifestly supersymmetric TTˉT\bar T and also more generally via the symmetric energy-momentum. We show that, for theories with fermions, such choices often lead us to doubling of degrees of freedom, with potential unitarity issues. We show that the extra sector develops a divergent gap in the "small deformation" limit and decouples in the infrared, although it remains uncertain in what sense these can be considered a deformation.

Keywords

Cite

@article{arxiv.2104.09529,
  title  = {$T\bar T$-deformed Fermionic Theories Revisited},
  author = {Kyung-Sun Lee and Piljin Yi and Junggi Yoon},
  journal= {arXiv preprint arXiv:2104.09529},
  year   = {2021}
}

Comments

58 pages + appendices; v2. typos corrected

R2 v1 2026-06-24T01:20:38.252Z