English

Constraining the symmetry energy with heavy-ion collisions and Bayesian analyses

Nuclear Experiment 2019-10-30 v2 Nuclear Theory

Abstract

Efficiency corrected single ratios of neutron and proton spectra in central 112^{112}Sn+112^{112}Sn and 124^{124}Sn+124^{124}Sn collisions at 120 MeV/u are combined with double ratios to provide constraints on the density and momentum dependencies of the isovector mean-field potential. Bayesian analyses of these data reveal that the isoscalar and isovector nucleon effective masses, msmvm_s^* - m_v^* are strongly correlated. The linear correlation observed in msmvm_s^* - m_v^* yields a nearly independent constraint on the effective mass splitting Δmnp=(mnmp)/mN=0.050.09+0.09δ\Delta m_{np}^*= (m_n^*-m_p^*)/m_N = -0.05_{-0.09}^{+0.09}\delta. The correlated constraint on the standard symmetry energy, S0S_0 and the slope, LL at saturation density yields the values of symmetry energy S(ρs)=16.81.2+1.2S(\rho_s)=16.8_{-1.2}^{+1.2} MeV at a sensitive density of ρs/ρ0=0.430.05+0.05\rho_s/\rho_0 = 0.43_{-0.05}^{+0.05}.

Keywords

Cite

@article{arxiv.1904.12471,
  title  = {Constraining the symmetry energy with heavy-ion collisions and Bayesian analyses},
  author = {P. Morfouace and C. Y. Tsang and Y. Zhang and W. G. Lynch and M. B. Tsang and D. D. S Coupland and M. Youngs and Z. Chajecki and M. A. Famiano and T. K. Ghosh and G. Jhang and Jenny Lee and H. Liu and A. Sanetullaev and R. Showalter and J. Winkelbauer},
  journal= {arXiv preprint arXiv:1904.12471},
  year   = {2019}
}