Generalized Fishnets and Exact Four-Point Correlators in Chiral CFT$_4$
Abstract
We study the Feynman graph structure and compute certain exact four-point correlation functions in chiral CFT proposed by \"{O}.G\"{u}rdo\u{g}an and one of the authors as a double scaling limit of -deformed SYM theory. We give full description of bulk behavior of large Feynman graphs: it shows a generalized "dynamical fishnet" structure, with a dynamical exchange of bosonic and Yukawa couplings. We compute certain four-point correlators in the full chiral CFT, generalizing recent results for a particular one-coupling version of this theory -- the bi-scalar "fishnet" CFT. We sum up exactly the corresponding Feynman diagrams, including both bosonic and fermionic loops, by Bethe-Salpeter method. This provides explicit OPE data for various twist-2 operators with spin, showing a rich analytic structure, both in coordinate and coupling spaces.
Cite
@article{arxiv.1901.00011,
title = {Generalized Fishnets and Exact Four-Point Correlators in Chiral CFT$_4$},
author = {Vladimir Kazakov and Enrico Olivucci and Michelangelo Preti},
journal= {arXiv preprint arXiv:1901.00011},
year = {2019}
}
Comments
71 pages, 16 figures, 4 tables. As accepted for publication by JHEP