English

Symmetric-asymmetric collision comparison: disentangling nuclear structure and subnucleonic structure effects for small system flow

Nuclear Theory 2025-10-23 v2 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Previous flow measurements in small collision systems were mostly based on highly asymmetric collisions (pp+Pb, pp+Au, dd+Au, 3^{3}He+Au), where both nuclear structure and subnucleonic fluctuations are important. Comparing these asymmetric systems with the newly available symmetric 16^{16}O+16^{16}O collisions at RHIC and LHC provides a unique opportunity to disentangle these two contributions. Using Glauber models incorporating both nucleon and quark-level substructure, we analyze multiplicity distributions and initial-state estimators: eccentricities εn\varepsilon_n for anisotropic flow vnv_n and inverse transverse size dd_{\perp} for radial flow. We find that subnucleonic fluctuations impact O+O collisions differently from asymmetric systems, creating specific patterns in flow observables that enable disentangling the competing contributions. Such experimental comparisons will reduce uncertainties in the initial conditions and improve our understanding of the properties of the QGP-like medium produced in small systems.

Keywords

Cite

@article{arxiv.2507.16162,
  title  = {Symmetric-asymmetric collision comparison: disentangling nuclear structure and subnucleonic structure effects for small system flow},
  author = {Shengli Huang and Jiangyong Jia and Chunjian Zhang},
  journal= {arXiv preprint arXiv:2507.16162},
  year   = {2025}
}

Comments

6 pages, 4 figures, plus an appendix

R2 v1 2026-07-01T04:12:34.641Z