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arXiv:2503.05667·v3·High Energy Physics — Phenomenology

Characterizing the hadronization of parton showers using the HOMER method

Benoit Assi🇺🇸 · Christian Bierlich🇸🇪 · Philip Ilten🇺🇸 · Tony Menzo🇺🇸 · Stephen Mrenna🇺🇸 · Manuel Szewc🇺🇸 · Michael K. Wilkinson🇺🇸 · Ahmed Youssef🇺🇸 · Jure Zupan🇺🇸

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Abstract

We update the HOMER method, a technique to solve a restricted version of the inverse problem of hadronization -- extracting the Lund string fragmentation function from data using only observable information. Here, we demonstrate its utility by extracting from synthetic Pythia simulations using high-level observables constructed on an event-by-event basis, such as multiplicities and shape variables. Four cases of increasing complexity are considered, corresponding to collisions at a center-of-mass energy of GeV producing either a string stretched between a and containing no gluons; the same string containing one gluon with fixed kinematics; the same but the gluon has varying kinematics; and the most realistic case, strings with an unrestricted number of gluons that is the end-result of a parton shower. We demonstrate the extraction of in each case, with the result of only a relatively modest degradation in performance of the HOMER method with the increased complexity of the string system.

Comments: 48 pages, 34 figures. Updated version with minor revision recommended by SciPost Physics

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