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Probing gluon fluctuations in nuclei with the first energy-dependent measurement of incoherent J/psi photoproduction in ultraperipheral PbPb collisions

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arxiv 2503.08903 v2 pith:IVHTGPU3 submitted 2025-03-11 nucl-ex hep-ex

Probing gluon fluctuations in nuclei with the first energy-dependent measurement of incoherent J/psi photoproduction in ultraperipheral PbPb collisions

classification nucl-ex hep-ex
keywords gammaincoherentmathrmmeasurementnucleiphotoproductioncenter-of-masscollisions
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Incoherent J/$\psi$ photoproduction in heavy ion ultraperipheral collisions (UPCs) provides a sensitive probe of localized, fluctuating gluonic structures within heavy nuclei. This study reports the first measurement of the photon-nucleon center-of-mass energy ($W_{\gamma\mathrm{N}}$) dependence of this process in PbPb UPCs at a nucleon-nucleon center-of-mass energy of 5.02 TeV, using 1.52 nb$^{-1}$ of data recorded by the CMS experiment. The measurement covers a wide $W_{\gamma\mathrm{N}}$ range of $\approx$ 40-400 GeV, probing gluons carrying a fraction $x$ of nucleon momentum down to an unexplored region of 6.5 $\times$ 10$^{-5}$. Compared to baseline predictions neglecting nuclear effects, the measured cross sections exhibit significantly greater suppression at lower $x$. Additionally, the ratio of incoherent to coherent photoproduction is found to be constant across the probed $W_{\gamma\mathrm{N}}$ and $x$ range, disfavoring the establishment of the black disk limit. This study provides critical insights into the $x$-dependent evolution of fluctuating gluonic structures within nuclei and calls for further advancements in theoretical models incorporating nuclear shadowing and gluon saturation.

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Cited by 1 Pith paper

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  1. Ultra-peripheral Collisions

    hep-ex 2026-07 conditional novelty 1.0

    Ultra-peripheral collisions of heavy ions are reviewed as the energy frontier for photon physics; the paper consolidates a decade of LHC/RHIC results and proposes no new measurement.