Probing Late-Stage Hadronic Interactions at High Baryon Density via Production in the RHIC Beam Energy Scan Program
arXiv:2601.14884 · doi:10.1016/j.physletb.2026.140389
Abstract
A precision measurement of the meson yield is reported in Au+Au collisions at and using the high-statistics data sample collected by the STAR experiment during the Beam Energy Scan II (BES-II) program at RHIC. The transeverse momentum ()-integrated yield ratios in central collisions show a suppression relative to peripheral collisions at the level, while a thermal model without final-stage rescattering overpredicts this ratio with a deviation of . These results indicate a loss of the measured signal in central collisions due to re-scattering of its hadronic decay products in the hadronic phase. The -integrated yield of charged kaons exhibits an approximate scaling with charged-particle multiplicity, independent of collision energy and system size. A similar trend is observed for the short-lived resonance, although significant deviations emerge at lower energies. At BES energies, the ratio shows stronger suppression than at the highest RHIC and LHC energies within a given multiplicity bin, particularly in central and mid-central collisions. This behavior is consistent with changes in the effective hadronic interaction cross section and is supported by transport model calculations, which indicate dominant meson-baryon interactions at lower energies and meson-meson interactions at higher energies.
17 pages, 6 figures, 2 tables