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arXiv:1708.07519·v1·High Energy Physics — Phenomenology

Double, triple, and -parton scatterings in high-energy proton and nuclear collisions

David d'Enterria🇨🇭 · Alexander Snigirev🇷🇺

Abstract

The framework to compute the cross sections for the production of particles with high mass and/or large transverse momentum in double- (DPS), triple- (TPS), and in general -parton scatterings, from the corresponding single-parton () values in high-energy proton-proton, proton-nucleus, and nucleus-nucleus is reviewed. The basic parameter of the factorized -parton scattering ansatz is an effective cross section encoding all unknowns about the underlying generalized -parton distribution in the proton (nucleon). In its simplest and most economical form, the parameter can be derived from the transverse parton profile of the colliding protons and/or nucleus, using a Glauber approach. Numerical examples for the cross sections and yields expected for the concurrent DPS or TPS production of heavy-quarks, quarkonia, and/or gauge bosons in proton and nuclear collisions at LHC and Future Circular Collider (FCC) energies are provided. The obtained cross sections are based on perturbative QCD predictions for at next-to-leading-order (NLO) or next-to-NLO (NNLO) accuracy including, when needed, nuclear modifications of the corresponding parton densities.

Comments: 33 pages, 9 figures. Review chapter in "Multiple parton interactions at the LHC", Bartalini & Gaunt eds., World Scientific

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