Rethinking Jets with Energy Correlators: Tracks, Resummation and Analytic Continuation
Abstract
We introduce an infinite set of jet substructure observables, derived as projections of -point energy correlators, that are both convenient for experimental studies and maintain remarkable analytic properties derived from their representations in terms of a finite number of light ray operators. We show that these observables can be computed using tracking or charge information with a simple reweighting by integer moments of non-perturbative track or fragmentation functions. Our results for the projected -point correlators are analytic functions of , allowing us to derive resummed results to next-to-leading logarithmic accuracy for all . We analytically continue our results to non-integer values of and define a corresponding analytic continuation of the observable, which we term a -correlator, that can be measured on jets of hadrons at the LHC. This enables observables that probe the leading twist collinear dynamics of jets to be placed into a single analytic family, which we hope will lead to new insights into jet substructure.
Cite
@article{arxiv.2004.11381,
title = {Rethinking Jets with Energy Correlators: Tracks, Resummation and Analytic Continuation},
author = {Hao Chen and Ian Moult and XiaoYuan Zhang and Hua Xing Zhu},
journal= {arXiv preprint arXiv:2004.11381},
year = {2020}
}
Comments
25 pages, many colorful illustrations. v2. Updated to match journal version