Publication | Open Access
Phase diagram of nuclear “pasta” and its uncertainties in supernova cores
83
Citations
39
References
2008
Year
Cosmic AbundanceQuantum Molecular DynamicsHigh-energy Nuclear ReactionNuclear PhysicsPhysicsNatural SciencesHigh-energy-density MatterNucleationSupernova CoresModel DependenceHigh-energy AstrophysicsCritical PhenomenonPhase DiagramNucleosynthesis
We examine the model dependence of the phase diagram of inhomogeneous nulcear matter in supernova cores using the quantum molecular dynamics (QMD). Inhomogeneous matter includes crystallized matter with nonspherical nuclei---``pasta'' phases---and the liquid-gas phase-separating nuclear matter. Major differences between the phase diagrams of the QMD models can be explained by the energy of pure neutron matter at low densities and the saturation density of asymmetric nuclear matter. We show the density dependence of the symmetry energy is also useful to understand uncertainties of the phase diagram. We point out that, for typical nuclear models, the mass fraction of the pasta phases in the later stage of the collapsing cores is higher than $10\text{\ensuremath{-}}20%$.
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