Testing the nuclear TMD gluon densities with heavy flavor production in proton-lead collisions at LHC

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Main Authors: Lipatov, A. V., Kotikov, A. V.
Format: Preprint
Published: 2026
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author Lipatov, A. V.
Kotikov, A. V.
author_facet Lipatov, A. V.
Kotikov, A. V.
contents We employ a simple model for nuclear modification of ordinary parton densities in a proton to evaluate the Transverse Momentum Dependent gluon and quark distributions in nuclei (nTMDs) within the popular Kimber-Martin-Ryskin/Watt-Martin-Ryskin approach. The model is based on a global analysis of available deep inelastic scattering data for different nuclear targets within the rescaling model, incorporating Fermi motion effects. The derived nTMDs are tested with latest CMS data on inclusive $b$-jet and $B^+$ meson production in proton-lead collisions collected at $\sqrt s = 5.02$ and $8.16$~TeV using the High Energy Factorization framework. We predict the corresponding nuclear medium modification factors to be about of $0.8 - 1.2$ in the probed kinematical region, which is consistent with other estimations. Specially we highlight a possibility to investigate the nuclear modification of parton densities by applying different cuts on the final states in such processes.
format Preprint
id arxiv_https___arxiv_org_abs_2602_09005
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Testing the nuclear TMD gluon densities with heavy flavor production in proton-lead collisions at LHC
Lipatov, A. V.
Kotikov, A. V.
High Energy Physics - Phenomenology
We employ a simple model for nuclear modification of ordinary parton densities in a proton to evaluate the Transverse Momentum Dependent gluon and quark distributions in nuclei (nTMDs) within the popular Kimber-Martin-Ryskin/Watt-Martin-Ryskin approach. The model is based on a global analysis of available deep inelastic scattering data for different nuclear targets within the rescaling model, incorporating Fermi motion effects. The derived nTMDs are tested with latest CMS data on inclusive $b$-jet and $B^+$ meson production in proton-lead collisions collected at $\sqrt s = 5.02$ and $8.16$~TeV using the High Energy Factorization framework. We predict the corresponding nuclear medium modification factors to be about of $0.8 - 1.2$ in the probed kinematical region, which is consistent with other estimations. Specially we highlight a possibility to investigate the nuclear modification of parton densities by applying different cuts on the final states in such processes.
title Testing the nuclear TMD gluon densities with heavy flavor production in proton-lead collisions at LHC
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2602.09005