Repository Article

·2024 OPEN ACCESS

Pseudorapidity distributions of charged hadrons in lead-lead collisions at $\sqrt{s_\mathrm{NN}}$ = 5.36 TeV

Aram Hayrapetyan , A. Tumasyan , W. Adam , Janik Walter Andrejkovic , T. Bergauer , S. Chatterjee , K. Damanakis , M. Dragicevic , Priya Sajid Hussain , M. Jeitler ,

arXiv (Cornell University)

Abstract

The pseudorapidity ($\eta$) distributions of charged hadrons are measured using data collected at the highest ever nucleon-nucleon center-of-mass energy of $\sqrt{s_\mathrm{NN}}$ = 5.36 TeV for collisions of lead-lead ions. The data were recorded by the CMS experiment at the LHC in 2022 and correspond to an integrated luminosity of 0.30 $\pm$ 0.03 $\mu$b$^{-1}$. Using the CMS silicon pixel detector, the yields of primary charged hadrons produced in the range $\vert\eta\vert$$\lt$ 2.6 are reported. The evolution of the midrapidity particle density as a function of collision centrality is also reported. In the 5% most central collisions, the charged-hadron $\eta$ density in the range $\vert\eta\vert$ $\lt$ 0.5 is found to be 2032 $\pm$ 91 (syst), with negligible statistical uncertainty. This result is consistent with an extrapolation from nucleus-nucleus collision data at lower center-of-mass energies. Comparisons are made to various Monte Carlo event generators and to previous measurements of lead-lead and xenon-xenon collisions at similar collision energies. These new data detail the dependence of particle production on the collision energy, initial collision geometry, and the size of the colliding nuclei.

Keywords

Pseudorapidity Physics Nuclear physics Hadron Charged particle Center of mass (relativistic) Range (aeronautics) Mass number Particle physics Impact parameter Nucleon Luminosity Collision Monte Carlo method Ion Astrophysics Neutron Statistics

Subject Areas

High-Energy Particle Collisions Research ·Nuclear and High Energy Physics ·Physical Sciences
Particle physics theoretical and experimental studies ·Nuclear and High Energy Physics ·Physical Sciences
Quantum Chromodynamics and Particle Interactions ·Nuclear and High Energy Physics ·Physical Sciences

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