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·2025 OPEN ACCESS

Observation of the Charged-Particle Multiplicity Dependence of $σ_{ψ(2S)}/σ_{J/ψ}$ in p-Pb Collisions at 8.16 TeV

V. Chekhovsky , A. Hayrapetyan , В. Макаренко , A. Tumasyan , W. Adam , J. W. Andrejkovic , L. Benato , T. Bergauer , Sa. Jain , K. Damanakis ,

ArXiv.org

Abstract

Bound states of charm and anticharm quarks, known as charmonia, have a rich spectroscopic structure that can be used to probe the dynamics of hadron production in high-energy hadron collisions. Here, the cross section ratio of excited ($\psi$(2S)) and ground state (J/$\psi$) vector mesons is measured as a function of the charged-particle multiplicity in proton-lead (pPb) collisions at a center-of-mass (CM) energy per nucleon pair of 8.16 TeV. The data corresponding to an integrated luminosity of 175 nb$^{-1}$ were collected using the CMS detector. The ratio is measured separately for prompt and nonprompt charmonia in the transverse momentum range 6.5 $\lt$$p_\text{T}$$\lt$ 30 GeV and in four rapidity ranges spanning $-$2.865 $\lt$$y_\text{CM}$$\lt$ 1.935. For the first time, a statistically significant multiplicity dependence of the prompt cross section ratio is observed in proton-nucleus collisions. There is no clear rapidity dependence in the ratio. The prompt measurements are compared with a theoretical model which includes interactions with nearby particles during the evolution of the system. These results provide additional constraints on hadronization models of heavy quarks in nuclear collisions.

Keywords

Sigma Physics Multiplicity (mathematics) Particle physics Nuclear physics Six Sigma Chemistry Mathematics Quantum mechanics Geometry

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