High-energy single diffractive dissociation of nucleons and the 3P-model applicability range
arXiv:1511.09226 · doi:10.1016/j.nuclphysa.2016.07.002
Abstract
The adequacy of the triple-Pomeron interaction approximation (the 3P-model) for description of the high-energy single diffractive dissociation of nucleons is analyzed via application to the available experimental data on nucleon-nucleon scattering, including the recent results produced by CMS Collaboration which allow to estimate reliably the triple-Pomeron coupling value. It is argued that the total contribution of secondary Reggeon exchanges is not negligible up to the Tevatron energy.
8 pages, 8 figures, 2 tables; minor corrections
References in corpus (4)
- Measurement of diffraction dissociation cross sections in pp collisions at sqrt(s) = 7 TeV
- Dual-Regge Approach to High-Energy, Low-Mass Diffraction Dissociation
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Cited by in corpus (5)
- Two-Pomeron eikonal approximation for the high-energy EDS of nucleons
- High-energy central exclusive production of the lightest vacuum resonance related to the soft Pomeron
- Triple Regge exchange and transverse single-spin asymmetries of the very forward neutral pion production in polarized collisions
- Impact of the -Reggeon exchanges on the observables of the single diffractive dissociation of nucleon at ultrahigh energies
- ExDiff Monte Carlo generator for Exclusive Diffraction. Version 1.0. Physics and manual