Extraction of Neutron-Skin Parameters in Zr+Zr and Ru+Ru Collisions at sNN = 200 GeV
Junjian Zhou, Dongsheng Li, Fan Si, Xiujun Li, Yifei Zhang
Abstract
The initial nuclear geometry of colliding nuclei, manifested in proton and neutron density profiles, plays a key role in determining final-state effects in high-energy heavy-ion collisions. We study 96Ru+96Ru and 96Zr+96Zr collisions at sNN=200 GeV incorporating an isospin-dependent Woods-Saxon distribution to account for neutron-skin effects in the UrQMD model. By systematically scanning the proton surface diffuseness parameter ap,Zr of the 96Zr nucleus and performing a χ2 analysis by comparing with STAR experimental data, we extract the relative neutron-skin thickness difference 0.278 0.018 fm between the two isobaric systems using the net-charge yield difference ΔQ. We further show that the neutron-skin effect evidently modifies the baryon-to-charge transport ratio RB/Q= B /ΔQ × ΔZ/A, and substantially influences the observed RB/Q>1 behavior in central collisions. This work indicates that nuclear structure effects contribute non-negligibly to baryon transport observables without a baryon junction hypothesis, and underscores the importance of precise initial-state geometry constraints for exploring novel QCD phenomena in relativistic heavy-ion collisions.
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