Measurement of the angle between jet axes in pp collisions at s√ = 5.02 TeV

Abstract
This article reports measurements of the angle between differently defined jet axes in pp collisions at √s = 5.02 TeV carried out by the ALICE Collaboration. Charged particles at midrapidity are clustered into jets with resolution parameters R = 0.2 and 0.4. The jet axis, before and after Soft Drop grooming, is compared to the jet axis from the Winner-Takes-All (WTA) recombination scheme. The angle between these axes, ∆Raxis, probes a wide phase space of the jet formation and evolution, ranging from the initial high-momentum-transfer scattering to the hadronization process. The ∆Raxis observable is presented for 20 < pTch jet < 100 GeV/c, and compared to predictions from the PYTHIA 8 and Herwig 7 event generators. The distributions can also be calculated analytically with a leading hadronization correction related to the non-perturbative component of the Collins-Soper-Sterman (CSS) evolution kernel. Comparisons to analytical predictions at next-to-leading-logarithmic accuracy with leading hadronization correction implemented from experimental extractions of the CSS kernel in Drell-Yan measurements are presented. The analytical predictions describe the measured data within 20% in the perturbative regime, with surprising agreement in the non-perturbative regime as well. These results are compatible with the universality of the CSS kernel in the context of jet substructure.
Main Author
Format
Articles Research article
Published
2023
Series
Subjects
Publication in research information system
Publisher
Springer
The permanent address of the publication
https://urn.fi/URN:NBN:fi:jyu-202309064960Use this for linking
Review status
Peer reviewed
ISSN
1126-6708
DOI
https://doi.org/10.1007/JHEP07(2023)201
Language
English
Published in
Journal of High Energy Physics
Citation
  • ALICE Collaboration. (2023). Measurement of the angle between jet axes in pp collisions at s√ = 5.02 TeV. Journal of High Energy Physics, 2023(7), Article 201. https://doi.org/10.1007/JHEP07(2023)201
License
CC BY 4.0Open Access
Funder(s)
Research Council of Finland
Research Council of Finland
European Commission
Funding program(s)
Centre of Excellence, AoF
Centre of Excellence, AoF
RIA Research and Innovation Action, H2020
Huippuyksikkörahoitus, SA
Huippuyksikkörahoitus, SA
RIA Research and Innovation Action, H2020
Research Council of FinlandEuropean Commission
Funded by the European Union. Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union or the European Education and Culture Executive Agency (EACEA). Neither the European Union nor EACEA can be held responsible for them.
Copyright© CERN, for the benefit of the ALICE Collaboration. Article funded by SCOAP3.

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