New experimental evidence that the proton develops asymptotically into a black disk
Abstract
Recently, the Auger group has extracted the proton-air cross section from observations of air showers produced by cosmic ray protons (and nuclei) interacting in the atmosphere and converted it into measurements of the total and inelastic cross sections and at the super-LHC energy of 57 TeV. Their results reinforce our earlier conclusions that the proton becomes a black disk at asymptotic energies, a prediction reached on the basis of sub-LHC and measurements of and , the ratio of the real to the imaginary part of the forward scattering amplitude [M. M. Block and F. Halzen, Phys. Rev. Lett. {\bf 107}, 212002 (2011)]. The same black disk description of the proton anticipated the values of and measured by the TOTEM experiment at the LHC cms (center of mass) energy of TeV, as well as those of measured by ALICE, ATLAS and CMS, as well as the ALICE measurement at 2.76 TeV. All data are consistent with a proton that is asymptotically a black disk of gluons: (i) both and behave as , saturating the Froissart bound, (ii) the forward scattering amplitude becomes pure imaginary (iii) the ratio , compatible with the black disk value of 1/2, and (iv) proton interactions become flavor blind.
Cite
@article{arxiv.1208.4086,
title = {New experimental evidence that the proton develops asymptotically into a black disk},
author = {Martin M. Block and Francis Halzen},
journal= {arXiv preprint arXiv:1208.4086},
year = {2015}
}
Comments
4 pages, 3 figures