Novel technique to extract experimental symmetry free energy information of nuclear matter
arXiv:1507.06895 · doi:10.1103/PhysRevC.92.024605
Abstract
A new method of accessing information on the symmetry free energy from yields of fragments produced in Fermi-energy heavy-ion collisions is proposed. Furthermore, by means of quantum fluctuation analysis techniques, correlations between extracted symmetry free-energy coefficients with temperature and density were studied. The obtained results are consistent with those of commonly used isoscaling techniques.
6 pages, 3 figures Heavy-ion nuclear reactions at Fermi energies, Nuclear equation of State, Fragmentation
References in corpus (13)
- Theory of Core-Collapse Supernovae
- The Giant Dipole Resonance as a quantitative constraint on the symmetry energy
- Isotopic dependence of the giant monopole resonance in the even-A ^{112-124}Sn isotopes and the asymmetry term in nuclear incompressibility
- Neutron and Proton Transverse Emission Ratio Measurements and the Density Dependence of the Asymmetry Term of the Nuclear Equation of State
- Symmetry energy of dilute warm nuclear matter
- Experimental determination of the symmetry energy of a low density nuclear gas
- Critical Behavior in Light Nuclear Systems: Experimental Aspects
- The many facets of the (non relativistic) Nuclear Equation of State
- Temperature effects on the nuclear symmetry energy and symmetry free energy with an isospin and momentum dependent interaction
- Density and Temperature of Fermions from Quantum Fluctuations
- The Quantum Nature of a Nuclear Phase Transition
- The Isospin Dependence Of The Nuclear Equation Of State Near The Critical Point
- Analysis of fragment yield ratios in the nuclear phase transition