Higher-Dimensional Symmetry of AdS$_2\times$S$^2$ Correlators
Abstract
It was recently shown that IIB supergravity on AdSS enjoys 10d conformal symmetry and that superstring theory on this background can be described using a 10d scalar effective field theory. In this paper we adapt these two complementary approaches to correlators of hypermultiplets in AdSS. In particular, we show that 4-point correlators of -BPS operators in the 1d boundary can be computed using 4d conformal symmetry and a 4d effective action in the bulk. The 4d conformal symmetry is realised by acting with Casimirs of , and is generically broken by higher derivative corrections. We point out similar structure underlying corrections to IIB supergravity in AdSS. In particular, while the corrections can be written in terms of a sixth order Casimir acting on a 10d conformal block, similar structure does not appear in higher-order corrections. We note however that a specific combination of higher derivative corrections can give rise to Witten diagrams with higher dimensional symmetry at the integrand level, with breaking then arising from the measure.
Keywords
Cite
@article{arxiv.2112.09597,
title = {Higher-Dimensional Symmetry of AdS$_2\times$S$^2$ Correlators},
author = {Theresa Abl and Paul Heslop and Arthur E. Lipstein},
journal= {arXiv preprint arXiv:2112.09597},
year = {2022}
}
Comments
v2. published in JHEP