Fine structure of the diffraction cone: from ISR to the LHC
Abstract
Following earlier findings, we argue that the low- structure in the elastic diffractive cone, recently reported by the TOTEM Collaboration at TeV, is a consequence of the threshold singularity required by channel unitarity, such as revealed earlier at the ISR. By using simple Regge-pole models, we analyze the available data on the elastic differential cross section in a wide range of c.m. energies, namely those from ISR to LHC8, obtaining good fits of all datasets. This study hints at the fact that the non-exponential behaviour observed at LHC8 is a recurrence of the low- "break" phenomenon, observed in the seventies at ISR, being induced by the presence of a two-pion loop singularity in the Pomeron trajectory.
Keywords
Cite
@article{arxiv.1509.02197,
title = {Fine structure of the diffraction cone: from ISR to the LHC},
author = {D. A. Fagundes and L. Jenkovszky and E. Q. Miranda and G. Pancheri and P. V. R. G. Silva},
journal= {arXiv preprint arXiv:1509.02197},
year = {2016}
}
Comments
11 pages, 6 figures, 7 tables. Invited contribution to the Gribov-85 Memorial Volume "Exploring Quantum Field Theory", to be published by World Scientific