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Five-loop Konishi in N=4 SYM

Eden, Burkhard; Heslop, Paul; Korchemsky, Gregory P.; Smirnov, Vladimir A.; Sokatchev, Emery

Authors

Burkhard Eden

Gregory P. Korchemsky

Vladimir A. Smirnov

Emery Sokatchev



Abstract

We present a new method for computing the Konishi anomalous dimension in N=4 SYM at weak coupling. It does not rely on the conventional Feynman diagram technique and is not restricted to the planar limit. It is based on the OPE analysis of the four-point correlation function of stress-tensor multiplets, which has been recently constructed up to six loops. The Konishi operator gives the leading contribution to the singlet SU(4) channel of this OPE. Its anomalous dimension is the coefficient of the leading single logarithmic singularity of the logarithm of the correlation function in the double short-distance limit, in which the operator positions coincide pairwise. We regularize the logarithm of the correlation function in this singular limit by a version of dimensional regularization. At any loop level, the resulting singularity is a simple pole whose residue is determined by a finite two-point integral with one loop less. This drastically simplifies the five-loop calculation of the Konishi anomalous dimension by reducing it to a set of known four-loop two-point integrals and two unknown integrals which we evaluate analytically. We obtain an analytic result at five loops in the planar limit and observe perfect agreement with the prediction based on integrability in AdS/CFT.

Citation

Eden, B., Heslop, P., Korchemsky, G. P., Smirnov, V. A., & Sokatchev, E. (2012). Five-loop Konishi in N=4 SYM. Nuclear Physics B, 862(1), 123-166. https://doi.org/10.1016/j.nuclphysb.2012.04.015

Journal Article Type Article
Publication Date 2012-09
Deposit Date Mar 14, 2012
Journal Nuclear Physics B
Print ISSN 0550-3213
Publisher Elsevier
Volume 862
Issue 1
Pages 123-166
DOI https://doi.org/10.1016/j.nuclphysb.2012.04.015