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Study of χc production in pPb collisions at sNN = 8.16 TeV

CMS Collaboration

nucl-exarXiv:2607.17847

Abstract

Production of prompt P-wave charmonium states χc1(1P) and χc2(1P) is studied in proton-lead (pPb) collisions at a center-of-mass energy per nucleon pair of [b]s_NN = 8.16 TeV. The analysis is based on data corresponding to an integrated luminosity of 175 nb-1 collected by the CMS experiment at the CERN LHC. The χc states are measured via their decay χc J/ψ\,γ. The J/ψ meson is reconstructed via its decay to a muon pair, while the photon is reconstructed through its conversion to an electron-positron pair. The ratio of production cross sections times branching fractions for the two charmonium states, [σ(χc2) B(χc2 J/ψ\, γ)] / [σ(χc1) B(χc1 J/ψ\, γ)], is reported in the rapidity range y(J/ψ) 2.4 for the transverse momentum range 6.5 pT(J/ψ) 30 GeV. The χc2-to-χc1 ratio is found to be independent of event charged-particle multiplicity, as well as of the rapidity and pT of the J/ψ. The consistency of this ratio with proton-proton measurements at s = 7 TeV indicates an absence of strong relative modification for χc states in pPb collisions, in contrast to the behavior observed in the ψ(2S)-to-J/ψ ratio.

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