Modular Invariance in Superstring Theory From ${\cal N} = 4$ Super-Yang-Mills
Abstract
We study the four-point function of the lowest-lying half-BPS operators in the super-Yang-Mills theory and its relation to the flat-space four-graviton amplitude in type IIB superstring theory. We work in a large- expansion in which the complexified Yang-Mills coupling is fixed. In this expansion, non-perturbative instanton contributions are present, and the duality invariance of correlation functions is manifest. Our results are based on a detailed analysis of the sphere partition function of the mass-deformed SYM theory, which was previously computed using supersymmetric localization. This partition function determines a certain integrated correlator in the undeformed SYM theory, which in turn constrains the four-point correlator at separated points. In a normalization where the two-point functions are proportional to and are independent of and , we find that the terms of order and in the large expansion of the four-point correlator are proportional to the non-holomorphic Eisenstein series and , respectively. In the flat space limit, these terms match the corresponding terms in the type IIB S-matrix arising from and contact interactions, which, for the case, represents a check of AdS/CFT at finite string coupling. Furthermore, we present striking evidence that these results generalize so that, at order with integer , the expansion of the integrated correlator we study is a linear sum of non-holomorphic Eisenstein series with half-integer index, which are manifestly invariant.
Keywords
Cite
@article{arxiv.1912.13365,
title = {Modular Invariance in Superstring Theory From ${\cal N} = 4$ Super-Yang-Mills},
author = {Shai M. Chester and Michael B. Green and Silviu S. Pufu and Yifan Wang and Congkao Wen},
journal= {arXiv preprint arXiv:1912.13365},
year = {2020}
}
Comments
33 pages + Appendices, 8 figures, Mathematica file attached; v2: typos fixed