Identifying -cluster configurations in Ne via ultracentral Ne+Ne Collisions
arXiv:2504.04688 · doi:10.1103/tffz-8q1m
Abstract
The initial-state geometry in relativistic heavy-ion collisions provides a novel probe to nuclear cluster structure. For Ne, a novel approach is proposed to distinguish between the cluster configurations (5 versus O) in order to gain insight into nuclear structure transitions governed by many-body quantum correlations. Through analytical calculations with the microscopic Brink model and event-by-event simulations using the hydrodynamic framework, we establish the normalized symmetric cumulant NSC (3, 2) and the Pearson coefficient as quantitative discriminators to reveal enhanced cluster degrees of freedom in the ground state of Ne. The ultracentral Ne+Ne collisions at the LHC can experimentally identify these two competing configurations via these flow correlation observables, opening a new paradigm for probing clustering in light nuclei.
6+7 pages, 2+7 figures, accepted for publication in Phys. Rev. Lett
References in corpus (17)
- Alternative ansatz to wounded nucleon and binary collision scaling in high-energy nuclear collisions
- Triangularity and Dipole Asymmetry in Heavy Ion Collisions
- Determination of the Fermion Pair Size in a Resonantly Interacting Superfluid
- Evidence of quadrupole and octupole deformations in Zr+Zr and Ru+Ru collisions at ultra-relativistic energies
- Transverse-momentum fluctuations in relativistic heavy-ion collisions from event-by-event viscous hydrodynamics
- Probing triaxial deformation of atomic nuclei in high-energy heavy ion collisions
- Evidence of Hexadecapole Deformation in Uranium-238 at the Relativistic Heavy Ion Collider
- Simplified modeling of cluster-shell competition in Ne and Mg
- Correlations between flow and transverse momentum in Xe+Xe and Pb+Pb collisions at the LHC with the ATLAS detector: a probe of the heavy-ion initial state and nuclear deformation
- Differentiating Three-Dimensional Molecular Structures using Laser-induced Coulomb Explosion Imaging
- Exploring the compactness of cluster in O nuclei with relativistic O+O collisions
- Effects of clustered nuclear geometry on the anisotropic flow in O-O collisions at the LHC within a multiphase transport model framework
- Cluster structure of 20Ne: Evidence for D(3h) symmetry
- Exploring the Nuclear Shape Phase Transition in Ultra-Relativistic Xe+Xe Collisions at the LHC
- Evidence of bicluster structure in the ground state of Ne
- Deformation probes for light nuclei in their collisions at relativistic energies
- First measurement of symmetric cumulants of hexagonal flow harmonics in PbPb collisions at = 5.02 TeV