English

Dip-Bump Structure in Proton's Single Diffractive Dissociation at the Large Hadron Collider

High Energy Physics - Phenomenology 2024-06-05 v1

Abstract

By extending the dipole Pomeron (DP) model, successful in describing elastic nucleon-nucleon scattering, to proton single diffractive dissociation (SD), we predict a dip-bump structure in the squared four-momentum transfer (tt) distribution of proton's SD. Structures in the tt distribution of single diffractive dissociation are predicted around t=4t=-4 GeV2^2 at LHC energies in the range of 3 GeV2^2 t\lesssim|t|\lesssim 7 GeV2^2. Apart from the dependence on ss (total energy squared) and tt (squared momentum transfer), we predict also a dependence on missing masses. We include the minimum set of Regge trajectories, namely the Pomeron and the Odderon, indispensable at the LHC. Further generalization, e.g., by the inclusion of non-leading Regge trajectories, is straightforward. The present model contains two types of Regge trajectories: those connected with tt-channel exchanges (the Pomeron, the Odderon, and non-leading (secondary) reggeons) appearing at small and moderate t-t, where they are real and nearly linear, as well as direct-channel trajectories α(M2)\alpha(M^2) related to missing masses. In this paper, we concentrate on structures in tt neglecting (for the time being) resonances in M2M^2.

Keywords

Cite

@article{arxiv.2406.01735,
  title  = {Dip-Bump Structure in Proton's Single Diffractive Dissociation at the Large Hadron Collider},
  author = {László Jenkovszky and Rainer Schicker and István Szanyi},
  journal= {arXiv preprint arXiv:2406.01735},
  year   = {2024}
}

Comments

17 pages, 14 figures, 3 tables; presented at ISMD 2024, Gy\"ongy\"os, Hungary

R2 v1 2026-06-28T16:51:55.828Z