Disentangling nuclear structure through multiparticle azimuthal correlations in high-energy isobar collisions
Abstract
Event-by-event fluctuations in the amplitudes of flow harmonics offer a novel approach to probing the initial-state characteristics in heavy-ion collisions. In this study, we conduct a systematic investigation of correlations among various flow harmonics utilizing multiparticle cumulants in Ru+Ru and Zr+Zr collisions at 200 GeV within the framework of a multiphase transport model. Correlated nuclear density distributions specific to the isobar systems are incorporated to evaluate the sensitivity of selected observables to variations in nuclear deformation and neutron skin thickness. The analysis reveals that multiparticle azimuthal correlations are responsive to these nuclear structure features, predominantly in the most central collision events. Furthermore, the examined correlations exhibit shallow dependence on the assumed shear viscosity values. These findings provide a quantitative evaluation of the extent to which multiparticle flow observables can discern nuclear structure effects in isobar collisions and offer valuable guidance for future detailed dynamical investigations and experimental measurements.
Cite
@article{arxiv.2409.15040,
title = {Disentangling nuclear structure through multiparticle azimuthal correlations in high-energy isobar collisions},
author = {Zaining Wang and Jinhui Chen and Jiangyong Jia and Yu-Gang Ma and Chunjian Zhang},
journal= {arXiv preprint arXiv:2409.15040},
year = {2026}
}
Comments
8 pgaes, 6 figure, 1 table; Physical Review C acceped version