English

Effect of nuclear structure on particle production in relativistic heavy-ion collisions using the AMPT model

High Energy Physics - Phenomenology 2024-07-11 v2 High Energy Physics - Experiment Nuclear Experiment

Abstract

We report first study of transverse momentum (pTp_\mathrm{T}) spectra for π±\pi^{\pm}, K±K^{\pm}, pp, and pˉ\bar{p} in isobar, 4496^{96}_{44}Ru+4496^{96}_{44}Ru and 4096^{96}_{40}Zr+4096^{96}_{40}Zr, collisions at sNN=200\sqrt{s_{\mathrm{NN}}} = 200 GeV using a multi-phase transport (AMPT) model. Particle yields (dN/dydN/dy), average transverse momenta (pT\langle p_\mathrm{T} \rangle), and particle ratios are reported in various collision systems with different parameterizations of the Woods-Saxon (WS) distribution. We observed a maximum difference of 5% in the particle yields in peripheral collisions when we included a quadrupole and octupole deformation and a nuclear size difference between the isobars. The π\pi^{-}/π+\pi^{+} ratio is smaller in Ru+Ru collisions compared to Zr+Zr collisions indicating an effect of isospin due to difference in number of protons and neutrons between the two nuclei. The KK^{-}/K+K^{+} ratio is same in both the systems indicating the dominance of the pair production mechanism in the kaon production. The pˉ/p\bar{p}/p ratio is further smaller in Ru+Ru collisions than Zr+Zr collisions, indicating the effect of baryon stopping in addition to the isospin effect. A system size dependence is observed in dN/dydN/dy and pT\langle p_\mathrm{T} \rangle when we compare the results from isobar collisions with Au+Au and U+U collisions.

Keywords

Cite

@article{arxiv.2305.13950,
  title  = {Effect of nuclear structure on particle production in relativistic heavy-ion collisions using the AMPT model},
  author = {P. Sinha and V. Bairathi and K. Gopal and C. Jena and S. Kabana},
  journal= {arXiv preprint arXiv:2305.13950},
  year   = {2024}
}

Comments

14 pages, 9 figures