English

Dissecting Parton Showers with Multi-Point Energy Correlators

High Energy Physics - Phenomenology 2026-07-08 v1 High Energy Physics - Experiment

Abstract

The last several years have seen tremendous progress in the ability to both compute and measure multi-point correlations in energy flux. The highly differential nature of energy correlators makes them ideal probes of multi-collinear factorization and azimuthal structure within jets. In this paper, we explore the phenomenology of four-point correlators in jet substructure. We identify experimentally realizable projections that probe different factorization channels onto splitting tensors and splitting functions. We perform a detailed phenomenological study using both Herwig and Pythia. By comparing parton shower results with analytic calculations in kinematic limits, we are able to disentangle intrinsic spin correlations from kinematic azimuthal correlations. In experimentally accessible kinematic regions, we find the spin correlations are subdominant, strongly motivating a complete calculation of the four-point correlator in QCD to provide a test of the parton shower results. We also present parameterizations and analysis algorithms that can be used experimentally. Our work sets the stage for the experimental measurement of these observables at the LHC, and their use as probes of the next generation of parton showers.

Cite

@article{arxiv.2607.07792,
  title  = {Dissecting Parton Showers with Multi-Point Energy Correlators},
  author = {Mark Gonzalez and Philip Harris and Kyle Lee and Ian Moult and Simon Rothman},
  journal= {arXiv preprint arXiv:2607.07792},
  year   = {2026}
}

Comments

42 pages, many beautiful figures

R2 v1 2026-07-22T20:33:25.693Z