English

Unmasking short-range correlations via initial-state fluctuations in relativistic heavy-ion collisions

Nuclear Theory 2025-12-01 v1 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Although relativistic heavy-ion collisions have emerged as a powerful probe for studying nuclear structure, the potential influence of nucleon-nucleon short-range correlations (NN-SRCs) on the initial state has remained an open question. By incorporating NN-SRCs into the initial conditions, we demonstrate that higher-order fluctuations of the initial transverse size, nn-particle cE/S{n}c_{E/S}\{n\}, which can be directly mapped to final-state mean transverse momentum fluctuations, exhibit remarkable sensitivity to NN-SRCs. Quantitatively, cE/S{3}c_{E/S}\{3\} and cE/S{4}c_{E/S}\{4\} differ by more than 10\% between systems with and without NN correlations. Moreover, we report a universal scaling of these quantities with A1/3A^{-1/3} and the average nuclear density, mirroring the connection between the SRC effect and the EMC effect in electron scatterings. This work establishes relativistic heavy-ion collisions as a new tool for probing nuclear structure and constraining two-body or many-body NN interactions across different energy scales and system sizes.

Keywords

Cite

@article{arxiv.2511.23293,
  title  = {Unmasking short-range correlations via initial-state fluctuations in relativistic heavy-ion collisions},
  author = {Pei Li and Kai-Jia Sun and Bo Zhou and Guo-Liang Ma},
  journal= {arXiv preprint arXiv:2511.23293},
  year   = {2025}
}

Comments

11 pages, 12 figures