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
Summary
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).
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