arXiv:2312.11320·v2·High Energy Physics — Phenomenology
Incoherent production at large identifies the onset of saturation at the LHC
Jan Cepila🇨🇿 · Jesus Guillermo Contreras🇨🇿 · Marek Matas🇨🇿 · Alexandra Ridzikova🇨🇿
Abstract
We predict that the onset of gluon saturation can be uniquely identified using incoherent production in PbPb collisions at currently accessible energies of the LHC. The diffractive incoherent photo-production of a vector meson off a hadron provides information on the partonic structure of the hadron. Within the Good-Walker approach it specifically measures the variance over possible target configurations of the hadronic colour field. For this process then, gluon saturation sets in when the cross section reaches a maximum, as a function of the centre-of-mass energy of the photon-hadron system (), and then decreases. We benchmark the energy-dependent hot-spot model against data from HERA and the LHC and demonstrate a good description of the available data. We show that the study of the energy dependence of the incoherent production of allows us to pinpoint the onset of saturation effects by selecting the region of Mandelstam- around 1 GeV where the contribution of hot spots is dominant. We predict the onset of saturation in a Pb target to occur for around a few hundred GeV. This can be measured with current data in ultra-peripheral PbPb collisions at the LHC.
Comments: 18 pages, 3 figures