English

Enhanced yield ratio of light nuclei in heavy ion collisions with a first-order QCD phase transition

Nuclear Theory 2021-12-01 v2 High Energy Physics - Phenomenology

Abstract

Using a transport model that includes a first-order chiral phase transition between the partonic and the hadronic matter, we study the development of density fluctuations in the matter produced in heavy ion collisions as it undergoes the phase transition, and their time evolution in later hadronic stage of the collisions. Using the coalescence model to describe the production of deuterons and tritons from nucleons at the kinetic freeze out, we find that the yield ratio NtNp/Nd2 N_\text{t}N_\text{p}/ N_\text{d}^2, where NpN_\text{p}, NdN_\text{d}, and NtN_\text{t} are, respectively, the proton, deuteron, and triton numbers, is enhanced if the evolution trajectory of the produced matter in the QCD phase diagram passes through the spinodal region of a first-order chiral phase transition.

Keywords

Cite

@article{arxiv.2006.08929,
  title  = {Enhanced yield ratio of light nuclei in heavy ion collisions with a first-order QCD phase transition},
  author = {Kai-Jia Sun and Che Ming Ko and Feng Li and Jun Xu and Lie-Wen Chen},
  journal= {arXiv preprint arXiv:2006.08929},
  year   = {2021}
}

Comments

12 pages, 6 figures