arXiv · 1212.5096
An updated analysis on the rise of the hadronic total cross-section at the LHC energy region
Abstract
A forward amplitude analysis on $pp$ and $\bar{p}p$ elastic scattering above 5 GeV is presented. The dataset includes the recent high-precision TOTEM measurements of the $pp$ total and elastic (integrated) cross-sections at 7 TeV and 8 TeV. Following previous works, the leading high-energy contribution for the total cross-section ($σ_{tot}$) is parametrized as $\ln^γ(s/s_h)$, where $γ$ and $s_h$ are free \textit{real} fit parameters. Singly-subtracted derivative dispersion relations are used to connect $σ_{tot}$ and the rho parameter ($ρ$) in an analytical way. Different fit procedures are considered, including individual fits to $σ_{tot}$ data, global fits to $σ_{tot}$ and $ρ$ data, constrained and unconstrained data reductions. The results favor a rise of the $σ_{tot}$ faster than the log-squared bound by Froissart and Martin at the LHC energy region. The parametrization for $σ_{tot}$ is extended to fit the elastic cross-section ($σ_{el}$) data with satisfactory results. The analysis indicates an asymptotic ratio $σ_{el}/σ_{tot}$ consistent with 1/3 (as already obtained in a previous work). A critical discussion on the correlation, practical role and physical implications of the parameters $γ$ and $s_h$ is presented. The discussion confronts the 2002 prediction of $σ_{tot}$ by the COMPETE Collaboration and the recent result by the Particle Data Group (2012 edition of the Review of Particle Physics). Some conjectures on possible implications of a fast rise of the proton-proton total cross-section at the highest energies are also presented.
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M. J. Menon, P. V. R. G. Silva. 2013-07-30. An updated analysis on the rise of the hadronic total cross-section at the LHC energy region. https://doi.org/10.1142/s0217751x13500991
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