arXiv:2604.19650·v1·Nuclear Theory
Probing the neutron-skin thickness through photoproduction in ultra-peripheral collisions
Haoyuan Li🇨🇳 · Lu-Meng Liu🇨🇳 · Jinhui Chen🇨🇳 · Yu-Gang Ma🇨🇳 · Chunjian Zhang🇨🇳
Abstract
We study the impact of neutron-skin thickness on photoproduction in ultra-peripheral collisions. Within the Color Glass Condensate framework, we calculate coherent and incoherent cross sections and examine their dependence on the momentum transfer for different neutron-skin thicknesses. We find a clear imprint of the neutron skin on the spectra: a larger neutron skin leads to a smoother and more extended color-density profile, suppressing the coherent cross section at large while enhancing the incoherent cross section through increased event-by-event configurational fluctuations in the nuclear periphery. We further show that the ratio of incoherent to coherent integrated cross sections provides a particularly sensitive and robust observable, with reduced theoretical uncertainties. These results establish diffractive vector-meson photoproduction in ultra-peripheral collisions as a powerful tomographic tool to constrain the neutron-skin thickness and the transverse gluon distribution at the LHC and future Electron-Ion Colliders.
Comments: 9 pages, 9 figures