Experimental Confirmation that the Proton is Asymptotically a Black Disk
Abstract
Although experimentally accessible energies can not probe `asymptopia', recent measurements of` inelastic cross sections at the LHC at 7000 GeV and by Auger at 57000 GeV allow us to conclude that: i) both and , the inelastic and total cross sections for and interactions, saturate the Froissart bound of , ii) when , the ratio is experimentally determined to be , consistent with the value 0.5 required by black disk at infinite energies, and iii) when , the forward scattering amplitude becomes purely imaginary, another requirement for the proton to become a totally absorbing black disk. Experimental verification of the hypotheses of analyticity and unitarity over the center of mass energy range GeV are discussed. In QCD, the black disk is naturally made of gluons; our results suggest that the lowest-lying glueball mass is GeV.
Keywords
Cite
@article{arxiv.1109.2041,
title = {Experimental Confirmation that the Proton is Asymptotically a Black Disk},
author = {Martin M. Block and Francis Halzen},
journal= {arXiv preprint arXiv:1109.2041},
year = {2015}
}
Comments
5 pages, 3 figures