This paper presents the measurement of charged-hadron and identified-hadron (KS0, Λ, Ξ−) yields in photonuclear collisions using 1.7 nb−1 of (Formula presented.) TeV Pb + Pb data collected in 2018 with the ATLAS detector at the Large Hadron Collider. Candidate photonuclear events are selected using a combination of tracking and calorimeter information, including the zero-degree calorimeter. The yields as a function of transverse momentum and rapidity are measured in these photonuclear collisions as a function of charged-particle multiplicity. These photonuclear results are compared with 0.1 nb−1 of (Formula presented.) TeV p + Pb data collected in 2016 by ATLAS using similar charged-particle multiplicity selections. These photonuclear measurements shed light on potential quark-gluon plasma formation in photonuclear collisions via observables sensitive to radial flow, enhanced baryon-to-meson ratios, and strangeness enhancement. The results are also compared with the Monte Carlo DPMJET-III generator and hydrodynamic calculations to test whether such photonuclear collisions may produce small droplets of quark-gluon plasma that flow collectively.

Charged-hadron and identified-hadron (đ‘Č0S, đšČ, đš”âˆ’)yield measurements in photo-nuclear Pb+Pb and 𝒑+Pb collisions at √𝒔NN = 5.02 TeV with ATLAS

Conventi, F.;Di Donato, C.;
2025-01-01

Abstract

This paper presents the measurement of charged-hadron and identified-hadron (KS0, Λ, Ξ−) yields in photonuclear collisions using 1.7 nb−1 of (Formula presented.) TeV Pb + Pb data collected in 2018 with the ATLAS detector at the Large Hadron Collider. Candidate photonuclear events are selected using a combination of tracking and calorimeter information, including the zero-degree calorimeter. The yields as a function of transverse momentum and rapidity are measured in these photonuclear collisions as a function of charged-particle multiplicity. These photonuclear results are compared with 0.1 nb−1 of (Formula presented.) TeV p + Pb data collected in 2016 by ATLAS using similar charged-particle multiplicity selections. These photonuclear measurements shed light on potential quark-gluon plasma formation in photonuclear collisions via observables sensitive to radial flow, enhanced baryon-to-meson ratios, and strangeness enhancement. The results are also compared with the Monte Carlo DPMJET-III generator and hydrodynamic calculations to test whether such photonuclear collisions may produce small droplets of quark-gluon plasma that flow collectively.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11367/162418
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