Comb Channel Lightcone Bootstrap II: Triple-Twist Anomalous Dimensions
Abstract
We advance the multipoint lightcone bootstrap and compute anomalous dimensions of triple-twist operators at large spin. In contrast to the well-studied double-twist operators, triple-twist primaries are highly degenerate so that their anomalous dimension is encoded in a matrix. At large spin, the degeneracy becomes infinite and the matrix becomes an integral operator. We compute this integral operator by studying a particular non-planar crossing equation for six-point functions of scalar operators in a lightcone limit. The bootstrap analysis is based on new formulas for six-point lightcone blocks in the comb-channel. For a consistency check of our results, we compare them to perturbative computations in the epsilon expansion of and theory. In both cases, we find perfect agreement between perturbative results and bootstrap predictions. As a byproduct of our studies, we complement previous results on triple-twist anomalous dimensions in scalar and theory at first and second order in epsilon, respectively.
Cite
@article{arxiv.2401.10986,
title = {Comb Channel Lightcone Bootstrap II: Triple-Twist Anomalous Dimensions},
author = {Sebastian Harris and Apratim Kaviraj and Jeremy A. Mann and Lorenzo Quintavalle and Volker Schomerus},
journal= {arXiv preprint arXiv:2401.10986},
year = {2024}
}
Comments
83 pages, 6 figures; v2: Published version. Added more details in some text and equations. Added subsection 7.2.3