Photoproduction in general-purpose event generators

Fuente: arXiv
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Main Authors: Helenius, Ilkka, Meinzinger, Peter, Plätzer, Simon, Richardson, Peter
Format: Preprint
Published: 2024
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author Helenius, Ilkka
Meinzinger, Peter
Plätzer, Simon
Richardson, Peter
author_facet Helenius, Ilkka
Meinzinger, Peter
Plätzer, Simon
Richardson, Peter
contents We compare the three general-purpose Monte Carlo event generators, HERWIG, PYTHIA, and SHEPRA for jet photoproduction processes in $e^+e^-$ and $ep$ collisions. Due to the lower energy scales probed, photoproduction is particularly sensitive to non-perturbative corrections. In a systematic analysis we disentangle and quantify the differences between the generators in these processes, i.e. contributions from beam remnants, parton showers, multiparton interactions (MPIs), and hadronisation modelling. We outline the default inputs and implementation differences and compare the computations with experimental data from LEP and HERA. We find that all generators provide a decent description of the data within the uncertainties, with particularly good descriptions by the LO-accurate PYTHIA and the NLO-accurate SHERPA. Finally, we also present predictions for the upcoming EIC for jet observables and event shapes and conclude that a modern global refit of the photon parton distributions and dedicated experimental measurements ported to the RIVET framework to constrain non-perturbative parameters are the key prerequisites for precision photoproduction phenomenology at the EIC.
format Preprint
id arxiv_https___arxiv_org_abs_2406_08026
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Photoproduction in general-purpose event generators
Helenius, Ilkka
Meinzinger, Peter
Plätzer, Simon
Richardson, Peter
High Energy Physics - Phenomenology
We compare the three general-purpose Monte Carlo event generators, HERWIG, PYTHIA, and SHEPRA for jet photoproduction processes in $e^+e^-$ and $ep$ collisions. Due to the lower energy scales probed, photoproduction is particularly sensitive to non-perturbative corrections. In a systematic analysis we disentangle and quantify the differences between the generators in these processes, i.e. contributions from beam remnants, parton showers, multiparton interactions (MPIs), and hadronisation modelling. We outline the default inputs and implementation differences and compare the computations with experimental data from LEP and HERA. We find that all generators provide a decent description of the data within the uncertainties, with particularly good descriptions by the LO-accurate PYTHIA and the NLO-accurate SHERPA. Finally, we also present predictions for the upcoming EIC for jet observables and event shapes and conclude that a modern global refit of the photon parton distributions and dedicated experimental measurements ported to the RIVET framework to constrain non-perturbative parameters are the key prerequisites for precision photoproduction phenomenology at the EIC.
title Photoproduction in general-purpose event generators
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2406.08026