Effect of the Coulomb interaction on the liquid-gas phase transition of nuclear matter
arXiv:1612.05448 · doi:10.1103/PhysRevC.95.065801
Abstract
We investigate the role of the Coulomb interaction on the liquid-gas phase transition of nuclear matter with three different values of proton fraction (=0.5,0.3 and 0.1), relevant for heavy-ion physics as well as various astrophysical scenarios, within the framework of quantum molecular dynamics. We perform simulations for a wide range of density and temperature with and without the Coulomb interaction and calculate the two-point correlation functions of nucleon density fluctuations for all the configurations to determine the phase transition region. We also determine the critical end point of the liquid-gas phase transition for all three values of proton fraction considered. We observe that the Coulomb interaction reduces the transition temperature by about 2 MeV for nuclear matter with =0.5 and 0.3 and by about 1 MeV for nuclear matter with =0.1. However, the critical density is found to be more or less insensitive to the Coulomb interaction.
17 pages, 10 figures
References in corpus (9)
- Simulation of Transitions between "Pasta" Phases in Dense Matter
- Formation of Nuclear "Pasta" in Supernovae
- Thermodynamics of isospin-asymmetric nuclear matter from chiral effective field theory
- Statistical description of complex nuclear phases in supernovae and proto-neutron stars
- Light clusters, pasta phases and phase transitions in core-collapse supernova matter
- Influence of the symmetry energy on nuclear pasta in neutron star crusts
- Low density nuclear matter with quantum molecular dynamics : The role of the symmetry energy
- Effects of finite size and symmetry energy on the phase transition of stellar matter at subnuclear densities
- Role of isospin physics in supernova matter and neutron stars
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