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On some hypergeometric solutions of the conformal Ward identities of scalar 4-point functions in momentum space

Authors :
Matteo Maria Maglio
Claudio CorianĂ²
Coriano', Claudio
Source :
Journal of High Energy Physics, Journal of High Energy Physics, Vol 2019, Iss 9, Pp 1-48 (2019)
Publication Year :
2019
Publisher :
Springer, 2019.

Abstract

We discuss specific hypergeometric solutions of the conformal Ward identities (CWI's) of scalar 4-point functions of primary fields in momentum space, in $d$ spacetime dimensions. We determine such solutions using various dual conformal ans\"atze (DCA's). We start from a generic dual conformal correlator, and require it to be conformally covariant in coordinate space. The two requirements constrain such solutions to take a unique hypergeometric form. They describe correlators which are at the same time conformal and dual conformal in any dimension. These specific ans\"atze also show the existence of a link between 3- and 4-point functions of a CFT for such class of exact solutions, similarly to what found for planar ladder diagrams. We show that in $d=4$ only the box diagram and its melonic variants, in free field theory, satisfies such conditions, the remaining solutions being nonperturbative. We then turn to the analysis of some approximate high energy fixed angle solutions of the CWI's which also in this case take the form of generalized hypergeometric functions. We show that they describe the behaviour of the 4-point functions at large energy and momentum transfers, with a fixed $-t/s$. The equations, in this case, are solved by linear combinations of Lauricella functions of 3 variables and can be rewritten as generalized 4K integrals. In both cases the CWI's alone are sufficient to identify such solutions and their special connection with generalized hypergeometric systems of equations.<br />Comment: Revised final version. Two sections added. To be published on Journal of High Energy Physics. 46 pages, 2 figures

Details

Language :
English
Database :
OpenAIRE
Journal :
Journal of High Energy Physics
Accession number :
edsair.doi.dedup.....be3768408b1b6d3cbb475218eea6cfd9