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Proton-proton, pion-proton and pion-pion diffractive collisions at ultra-high energies

Abstract

The LHC energies are those at which the asymptotic regime in hadron-hadron diffractive collisions (pp,πp,ππpp,\pi p,\pi\pi) might be switched on. Based on results of the Dakhno-Nikonov eikonal model which is a generalization of the Good-Walker eikonal approach for a continuous set of channels, we present a picture for transformation of the constituent quark mode to the black disk one. In the black disk mode (s10\sqrt s \geq 10 TeV) we have a growth of the logarithm squared type for total and elastic cross sections, σtotln2s\sigma_{tot}\sim\ln^2s and σelln2s\sigma_{el}\sim\ln^2s, and (τ=q2σtot)(\tau={\bf q}_\perp^2\sigma_{tot})-scaling for diffractive scattering and diffractive dissociation of hadrons. The diffractive dissociation cross section grows as σDlns\sigma_{D}\sim\ln{s}, σDDlns\sigma_{DD}\sim\ln{s}, and their relative contribution tends to zero: σD/σtot0\sigma_{D}/\sigma_{tot}\to 0, σDD/σtot0\sigma_{DD}/\sigma_{tot}\to 0. Asymptotic characteristics of diffractive and total cross sections are universal, and this results in the asymptotical equality of cross sections for all types of hadrons (the Gribov's universality). The energy scale for switching on the asymptotic mode is estimated for different processes.Comment: 14 pages. arXiv admin note: text overlap with arXiv:1310.283

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