English

Separation of Variables in AdS/CFT: Functional Approach for the Fishnet CFT

High Energy Physics - Theory 2021-07-07 v2

Abstract

The major simplification in a number of quantum integrable systems is the existence of special coordinates in which the eigenstates take a factorised form. Despite many years of studies, the basis realising the separation of variables (SoV) remains unknown in N=4 SYM and similar models, even though it is widely believed they are integrable. In this paper we initiate the SoV approach for observables with nontrivial coupling dependence in a close cousin of N=4 SYM - the fishnet 4D CFT. We develop the functional SoV formalism in this theory, which allows us to compute non-perturbatively some nontrivial observables in a form suitable for numerical evaluation. We present some applications of these methods. In particular, we discuss the possible SoV structure of the one-point correlators in presence of a defect, and write down a SoV-type expression for diagonal OPE coefficients involving an arbitrary state and the Lagrangian density operator. We believe that many of the findings of this paper can be applied in the N=4 SYM case, as we speculate in the last part of the article.

Keywords

Cite

@article{arxiv.2103.15800,
  title  = {Separation of Variables in AdS/CFT: Functional Approach for the Fishnet CFT},
  author = {Andrea Cavaglià and Nikolay Gromov and Fedor Levkovich-Maslyuk},
  journal= {arXiv preprint arXiv:2103.15800},
  year   = {2021}
}

Comments

53 pages + appendices, 5 figures. v2: references added, small changes to the text. Accepted for publication in JHEP