One-loop Structure of Higher Rank Wilson Loops in AdS/CFT
Abstract
The half-supersymmetric Wilson loop in SYM is arguably the central non-local operator in the AdS/CFT correspondence. On the field theory side, the vacuum expectation values of Wilson loops in arbitrary representations of are captured to all orders in perturbation theory by a Gaussian matrix model. Of prominent interest are the -symmetric and -antisymmetric representations, whose gravitational description is given in terms of D3- and D5-branes, respectively, with fluxes in their world volumes. At leading order in and the agreement in both cases is exact. In this note we explore the structure of the next-to-leading order correction in the matrix model and compare with existing string theory calculations. We find agreement in the functional dependence on but a mismatch in the numerical coefficients.
Keywords
Cite
@article{arxiv.1409.3187,
title = {One-loop Structure of Higher Rank Wilson Loops in AdS/CFT},
author = {Alberto Faraggi and James T. Liu and Leopoldo A. Pando Zayas and Guojun Zhang},
journal= {arXiv preprint arXiv:1409.3187},
year = {2016}
}
Comments
5 pages, one figure. v2: A crucial minus sign acknowledged; agreement now claimed only at the functional level. Changes in abstract and text