English

Spinodal Instabilities in Nuclear Matter in a Stochastic Relativistic Mean-Field Approach

Nuclear Theory 2015-05-13 v1

Abstract

Spinodal instabilities and early growth of baryon density fluctuations in symmetric nuclear matter are investigated in the basis of stochastic extension of relativistic mean-field approach in the semi-classical approximation. Calculations are compared with the results of non-relativistic calculations based on Skyrme-type effective interactions under similar conditions. A qualitative difference appears in the unstable response of the system: the system exhibits most unstable behavior at higher baryon densities around ρb=0.4 ρ0\rho_{b}=0.4 ~\rho_{0} in the relativistic approach while most unstable behavior occurs at lower baryon densities around ρb=0.2 ρ0\rho_{b}=0.2 ~\rho_{0} in the non-relativistic calculations

Keywords

Cite

@article{arxiv.0907.1771,
  title  = {Spinodal Instabilities in Nuclear Matter in a Stochastic Relativistic Mean-Field Approach},
  author = {S. Ayik and O. Yilmaz and N. Er and A. Gokalp and P. Ring},
  journal= {arXiv preprint arXiv:0907.1771},
  year   = {2015}
}

Comments

18 pages, 7 figures