Measurement of the centrality dependence of the charged-particle pseudorapidity distribution in proton--lead collisions at $\sqrt{s_{_{\rm{NN}}}} = 5.02$ TeV with the ATLAS detector
ATLAS Collaboration

TL;DR
This paper measures how the distribution of charged particles in proton-lead collisions at 5.02 TeV depends on collision centrality, revealing asymmetries and model sensitivities related to initial state fluctuations.
Contribution
It provides the first detailed measurement of pseudorapidity distributions in p+Pb collisions as a function of centrality, highlighting the importance of color fluctuations in initial state modeling.
Findings
Charged-particle distributions vary strongly with centrality.
Asymmetry increases between proton-going and Pb-going directions in central collisions.
Different models yield varying multiplicity per participant, emphasizing initial state fluctuations.
Abstract
The centrality dependence of the mean charged-particle multiplicity as a function of pseudorapidity is measured in approximately 1 b of proton--lead collisions at a nucleon--nucleon centre-of-mass energy of TeV using the ATLAS detector at the Large Hadron Collider. Charged particles with absolute pseudorapidity less than 2.7 are reconstructed using the ATLAS pixel detector. The +Pb collision centrality is characterised by the total transverse energy measured in the Pb-going direction of the forward calorimeter. The charged-particle pseudorapidity distributions are found to vary strongly with centrality, with an increasing asymmetry between the proton-going and Pb-going directions as the collisions become more central. Three different estimations of the number of nucleons participating in the +Pb collision have been carried out using the…
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