arXiv:2607.11286·v1·High Energy Physics — Phenomenology
Determination of the Odderon amplitude in elastic cross-sections at high energies from scaling and analyticity
J. A. velazquez Corral🇺🇸 · B. G. Giraud🇫🇷 · R. Peschanski🇫🇷 · C. Royon🇺🇸
Abstract
Scaling amplitudes describing elastic scattering differential cross-sections in the dip-bump region of momentum transfer at the LHC have been recently derived~\cite{scaling}. We check that the same scaling is verified by the cross-section at the highest energy of the Tevatron. Applying the general "energy to phase" relation for a given signature, coming from the analiticity properties inherent to the S-Matrix formalism~\cite{chew}, we derive the scaling amplitude with positive signature (i.e. the Pomeron). Fitting the differential cross-sections measured by the TOTEM collaboration leads to some tension with data in the experimental dip observed at moderate momentum transfer. Concentrating the study to the dip/bump region, we are able to determine a contribution of a negative signature amplitude (i.e. the Odderon) leading to a parameter free prediction for the differential cross-section which is in agreement with the D0 data. The extraction of the Odderon amplitude in both modulus and phase is then performed and discussed.