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arXiv:2505.11713·v2·Nuclear Theory

Probing Nuclear Geometry through Multi-Particle Azimuthal Correlations and Rapidity-Even Dipolar Flow in O+O Collisions

Kaiser Shafi🇮🇳 · Sandeep Chatterjee🇮🇳

Abstract

We study symmetric and asymmetric cumulants as well as rapidity-even dipolar flow in O+O collisions at ~GeV to explore -clustering phenomena in light nuclei within the viscous relativistic hydrodynamics framework. Signatures of -clustering manifest in the anisotropic flow coefficients and their correlations -- particularly in observables involving elliptic-triangular flow correlations. We show that final-state symmetric and asymmetric cumulants -- especially and -- are sensitive to the initial nuclear geometry. Additionally, we observe a significant difference in rapidity-even dipolar flow, , between -clustered and Woods--Saxon configurations in high-multiplicity events. These findings underscore the pivotal role of nuclear structure in heavy-ion collision dynamics and provide observables for distinguishing nuclear geometries, particularly in ultra-central collisions.

Comments: 14 pages, 7 figures

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