Two-Pomeron eikonal approximation for the high-energy EDS of nucleons
arXiv:1907.09968 · doi:10.1103/PhysRevD.101.074028
Abstract
It is demonstrated that the elastic diffractive scattering of nucleons at collision energies higher than 540 GeV and transferred momenta lower than 2 GeV, including the Coulomb-nuclear interference region, can be described in the framework of a very simple Regge-eikonal model where the eikonal is just a sum of two supercritical Regge pole terms. The predictive value of the proposed approximation is verified.
8 pages; the list of references is enlarged
References in corpus (8)
- Measurement of the total cross section from elastic scattering in collisions at TeV with the ATLAS detector
- Measurement of the total cross section from elastic scattering in collisions at TeV with the ATLAS detector
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Cited by in corpus (6)
- Anomaly in the differential cross sections at 13 TeV
- High-energy elastic diffractive scattering of nucleons in the framework of the two-Reggeon eikonal approximation (from U-70 to LHC)
- Nonperturbative gluon exchange in elastic scattering at TeV energies
- Analytical representation for amplitudes and differential cross section of pp elastic scattering at 13 TeV
- Hadron wave functions in high-energy scattering, form factors and strong decays: the effects of the Lorentz contracted form
- Soft Pomeron in light of the LHC correlated data