Abstract

We present an updated empirical analysis on the ratio of the elastic (integrated) to the total cross section in the c.m. energy interval from 5 GeV to 8 TeV. As in a previous work, we use a suitable analytical parametrization for that ratio (depending on only four free fit parameters) and investigate three asymptotic scenarios: either the black disk limit or scenarios above or below that limit. The dataset includes now the datum at 7 TeV, recently reported by the ATLAS Collaboration. Our analysis favors, once more, a scenario below the black disk, providing an asymptotic ratio consistent with the rational value 1/3, namely a gray disk limit. Upper bounds for the ratio of the diffractive (dissociative) to the inelastic cross section are also presented.

Highlights

  • The total cross section and the elastic cross section are fundamental quantities in the study of elastic hadron scattering

  • We present an updated empirical analysis on the ratio of the elastic to the total cross section in the c.m. energy interval from 5 GeV to 8 TeV

  • Upper bounds for the ratio of the diffractive to the inelastic cross section are presented

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Summary

Introduction

The total cross section (σtot) and the elastic cross section (σel) are fundamental quantities in the study of elastic hadron scattering. As in a previous work, we use a suitable analytical parametrization for that ratio (depending on only four free fit parameters) and investigate three asymptotic scenarios: either the black disk limit or scenarios above or below that limit. By means of a suitable empirical parametrization and fits to the experimental data, we investigate different asymptotic scenarios for X(s).

Results
Conclusion

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