BPZ equations for higher degenerate fields and nonperturbative Dyson-Schwinger equations
Abstract
In the two-dimensional Liouville conformal field theory, correlation functions involving a degenerate field satisfy partial differential equations due to the decoupling of the null descendant field. On the other hand, the instanton partition function of a four-dimensional supersymmetric theory in the -background at a special point of the parameter space also satisfies a partial differential equation resulting from the constraints of the gauge field configurations. This partial differential equation can be proved using the nonperturbative Dyson-Schwinger equations. We show for the next-to-simplest case that the partial differential equations obtained from two different perspectives can be identified, thereby confirming an assertion of the BPS/CFT correspondence.
Cite
@article{arxiv.1710.06970,
title = {BPZ equations for higher degenerate fields and nonperturbative Dyson-Schwinger equations},
author = {Saebyeok Jeong and Xinyu Zhang},
journal= {arXiv preprint arXiv:1710.06970},
year = {2024}
}
Comments
23 pages; v2: additional references and minor corrections; v3: minor corrections, published in PRD