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Main Authors: He, Jialin, Peng, Xinye, Yin, Zhongbao, Zheng, Liang
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2506.20612
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author He, Jialin
Peng, Xinye
Yin, Zhongbao
Zheng, Liang
author_facet He, Jialin
Peng, Xinye
Yin, Zhongbao
Zheng, Liang
contents Event shape measurements are crucial for understanding the underlying event and multiple-parton interactions (MPIs) in high energy proton-proton (pp) collisions. In this paper, the Tsallis Blast-Wave model with independent non-extensive parameters for mesons and baryons, was applied to analyze transverse momentum spectra of charged pions, kaons, and protons in pp collision events at $\sqrt{s}=13$ TeV classified by event shape estimators relative transverse event activity, unweighted transverse spherocity, and flattenicity. Our analysis reveals consistent trends in the kinetic freeze-out temperature and non-extensive parameter across different collision systems and event shape classes. The use of diverse event-shape observables in pp collisions has significantly expanded the accessible freeze-out parameter space, allowing for a more comprehensive exploration of its boundaries. Among these event shape classifiers, flattenicity emerges as a unique observable for disentangling hard process contributions from additive MPI effects, allowing the isolation of collective motion effects encoded by the radial flow velocity. Through the analysis of the interplay between event-shape measurements and kinetic freeze-out properties, we gain deeper insights into the mechanisms responsible for flow-like signatures in pp collisions.
format Preprint
id arxiv_https___arxiv_org_abs_2506_20612
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Extracting the kinetic freeze-out properties of high energy pp collisions at the LHC with event shape classifiers
He, Jialin
Peng, Xinye
Yin, Zhongbao
Zheng, Liang
High Energy Physics - Phenomenology
Nuclear Experiment
Event shape measurements are crucial for understanding the underlying event and multiple-parton interactions (MPIs) in high energy proton-proton (pp) collisions. In this paper, the Tsallis Blast-Wave model with independent non-extensive parameters for mesons and baryons, was applied to analyze transverse momentum spectra of charged pions, kaons, and protons in pp collision events at $\sqrt{s}=13$ TeV classified by event shape estimators relative transverse event activity, unweighted transverse spherocity, and flattenicity. Our analysis reveals consistent trends in the kinetic freeze-out temperature and non-extensive parameter across different collision systems and event shape classes. The use of diverse event-shape observables in pp collisions has significantly expanded the accessible freeze-out parameter space, allowing for a more comprehensive exploration of its boundaries. Among these event shape classifiers, flattenicity emerges as a unique observable for disentangling hard process contributions from additive MPI effects, allowing the isolation of collective motion effects encoded by the radial flow velocity. Through the analysis of the interplay between event-shape measurements and kinetic freeze-out properties, we gain deeper insights into the mechanisms responsible for flow-like signatures in pp collisions.
title Extracting the kinetic freeze-out properties of high energy pp collisions at the LHC with event shape classifiers
topic High Energy Physics - Phenomenology
Nuclear Experiment
url https://arxiv.org/abs/2506.20612