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D-meson production in high energy pA collisions within the QCD color dipole transverse momentum representation

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In this article , the authors investigated the D -meson production by considering the unintegrated gluon distribution within the dipole approach in the momentum representation and compared the results with the Glauber-Gribov framework.
Abstract
Abstract The D -meson production is investigated by considering the unintegrated gluon distribution within the dipole approach in the momentum representation. We analyze the D -meson spectrum accounting for the effects of nonlinear behavior of the QCD dynamics which can be accordingly addressed in the dipole framework. The unintegrated gluon distribution is obtained by using geometric scaling property and the results are compared to the Glauber–Gribov framework. The absolute transverse momentum spectra and the nuclear modification ratios are investigated. Predictions are compared with the experimental measurements by the ALICE and LHCb Collaborations in pA collisions for different rapidity bins.

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D 0 meson production in high‐energy pp collisions based on dipole transverse momentum approach

TL;DR: By employing the color dipole approach in the momentum representation taking into account the nonlinear behavior of the QCD dynamics, the authors make predictions for the D-meson differential cross-section in terms of the transverse momentum and rapidity distributions considering collisions at the LHC.
References
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Semihard processes in QCD

TL;DR: In this article, the effects of parton-parton interactions (screenings), that stop the increase of the cross sections near their unitarity limit, and the coherent emission of soft gluons by the global colour charge of whole groups of harder particles, are studied in detail.
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Factorization of Hard Processes in QCD

TL;DR: In this article, the standard factorization theorems for hard processes in QCD are summarized and their proofs are presented, together with a discussion of the standard QCD QCD factorization theorem.
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Saturation effects in deep inelastic scattering at low Q 2 and its implications on diffraction

TL;DR: In this paper, a model based on the concept of saturation for small ∆ ∆ + ∆ and ∆ − ∆ = 0.01 was proposed to describe all deep inelastic scattering data below ∆=0.01.
Journal ArticleDOI

High energy factorization and small-x heavy flavour production

TL;DR: In this paper, a form of high-energy factorization is proposed to find the small-x behaviour of heavy mass production in QCD, which is k ⊥ -dependent and provides all leading ln x corrections to the coefficient function in various kinds of single-k and double-k processes.
Journal ArticleDOI

Matching NLO QCD and parton showers in heavy flavour production

TL;DR: In this paper, the MC@NLO approach was applied to the hadroproduction of gauge boson pairs at the Tevatron and LHC, where the mixture of final-state QCD radiation and different colour flows was considered.
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