Inclusive charm and bottom quark pair production cross sections at hadron colliders at next-to-next-to-leading-order accuracy
Abstract
Abstract The inclusive cross sections for charm (ccbar) and bottom (bbbar) quark-antiquark pair production in proton-proton, proton-antiproton, and proton-nucleus collisions are studied over a wide range of center-of-mass energies, √ s ≈ 10 GeV-400 TeV. All existing data over √ s ≈ 10 GeV-14 TeV are collected and compared to calculations at next-to-next-to-leading-order (NNLO) accuracy using the new fixed-order MaunaKea open-source code for varying sets of parton distribution functions (PDFs). Relative to next-to-leading-order (NLO) predictions, the NNLO cross sections are enhanced by up to a factor of two, with the associated theoretical scale uncertainties reduced by the same amount, leading to agreement with experimental data over the full range of collision energies. The NNLO results are also compared with NLO predictions obtained within the SACOT-m T generalmass variable-flavour-number scheme. Despite still sizable theoretical and experimental uncertainties, ccbar cross section at multi-TeV energies can provide extra constraints on the gluon density at very small-x in global PDF analyses. In the bottom sector, more precise cross section measurements at low energies, √ s ≈ 10-100 GeV, can help to constrain the bottom-quark pole mass.
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Authors: David d'Enterria, Felix Hekhorn, Ilkka Helenius, Van Dung Le, Hannu Paukkunen
Institutions: University of Jyväskylä, Helsinki Institute of Physics, European Organization for Nuclear Research