Directly probing existence of -cluster structure in Ne by relativistic heavy-ion collisions
arXiv:2502.08057 · doi:10.1103/PhysRevC.111.L021901
Abstract
Can relativistic heavy-ion collisions only probe the global shape of colliding nuclei, or their detailed internal structure as well? Taking Ne as an example, we attempt to directly probe its internal -cluster structure, by comparing experimentally measured observables in collisions at relativistic energies from density distributions of Ne with and without -cluster structure. Since the two density distributions give the same nucleus size and deformation, they lead to similar mid-rapidity observables. However, the -cluster structure may considerably reduce the free spectator nucleon yield and enhance the spectator light nuclei yield, as a result of more compact initial phase-space distribution of nucleons inside clusters. We propose to measure the scaled yield ratio of free spectator neutrons to charged particles with mass-to-charge ratio , 3/2, and 2 in ultra-central Ne+Ne collisions, which is found to be reduced by about at TeV and about at GeV with -cluster structure in Ne. This scaled yield ratio thus serves as a robust and direct probe of the existence of -cluster structure in Ne free from the uncertainty of mid-rapidity dynamics.
6 pages, 4 figures
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