English

Shape of atomic nuclei in heavy ion collisions

Nuclear Theory 2022-01-19 v4 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

In the hydrodynamic model description of heavy ion collisions, the final-state anisotropic flow vnv_n are linearly related to the strength of the multi-pole shape of the distribution of nucleons in the transverse plane εn\varepsilon_n, vnεnv_n\propto \varepsilon_n. The εn\varepsilon_n, for n=1,2,3,4n=1,2,3,4, are sensitive to the shape of the colliding ions, characterized by the quadrupole β2\beta_2, octupole β3\beta_3 and hexadecapole β4\beta_4 deformations. This sensitivity is investigated analytically and also in a Monte Carlo Glauber model. One observes a robust linear relation, εn2=an+bnβn2\langle\varepsilon_n^2\rangle = a_n'+b_n'\beta_n^2, for events in a fixed centrality. The ε12\langle\varepsilon_1^2\rangle has a contribution from β3\beta_3 and β4\beta_4, and ε32\langle\varepsilon_3^2\rangle from β4\beta_4. In the ultra-central collisions, there are little cross contributions between β2\beta_2 and ε3\varepsilon_3 and between β3\beta_3 and ε2\varepsilon_2, but clear cross contributions are present in non-central collisions. Additionally, εn2\langle\varepsilon_n^2\rangle are insensitive to non-axial shape parameters such as the triaxiality. This is good news because the measurements of v2v_2, v3v_3 and v4v_4 can be used to constrain simultaneously the β2\beta_2, β3\beta_3, and β4\beta_4 values. This is best done by comparing two colliding ions with similar mass numbers and therefore nearly identical ana_n', to obtain simple equation that relates the βn\beta_n of the two species. This opens up the possibility to map the shape of the atomic nuclei at a timescale (<1024<10^{-24}s) much shorter than probed by low-energy nuclear structure physics (<1021<10^{-21}s), which ultimately may provide information complementary to those obtained in the nuclear structure experiments.

Keywords

Cite

@article{arxiv.2106.08768,
  title  = {Shape of atomic nuclei in heavy ion collisions},
  author = {Jiangyong Jia},
  journal= {arXiv preprint arXiv:2106.08768},
  year   = {2022}
}

Comments

18 pages, 9 figures plus two appendixes, published version