English

Constraints on neutron skin thickness and nuclear deformations using relativistic heavy-ion collisions from STAR

Nuclear Experiment 2023-03-15 v1 Nuclear Theory

Abstract

In these proceedings, we present the measurements of neutron skin thickness and nuclear deformation using isobar 4496^{96}_{44}Ru+4496^{96}_{44}Ru and 4096^{96}_{40}Zr+4096^{96}_{40}Zr collisions at sNN=200\sqrt{s_{_{\rm NN}}}=200 GeV by the STAR detector. The significant deviations from unity of the isobar ratios of elliptic flow v2v_{2}, triangular flow v3v_{3}, mean pTp_{\rm T} fluctuations δpT2/pT2\langle\delta p_{\rm T}^{2}\rangle/\langle p_{\rm T}\rangle^{2}, and asymmetric cumulant ac2{3}{\rm ac}_{2}\{3\} indicate large differences in their quadrupole and octuple deformations. The significant deviations of the isobar ratios of produced hadron multiplicity NchN_{\rm ch}, mean transverse momentum pT\langle p_{\rm T}\rangle, and net charge number ΔQ\Delta Q indicate a halo-type neutron skin for the Zr nucleus, much thicker than for the Ru nucleus, consistent with nuclear structure calculations. We discuss how we extract the neutron skin thickness, the symmetry energy slope parameter, and deformation parameters from data.

Keywords

Cite

@article{arxiv.2208.06149,
  title  = {Constraints on neutron skin thickness and nuclear deformations using relativistic heavy-ion collisions from STAR},
  author = {Haojie Xu},
  journal= {arXiv preprint arXiv:2208.06149},
  year   = {2023}
}

Comments

Presented at Quark Matter 2022, Karkow, Poland, April 4-10, 2022