Nucleon self-energies for supernova equations of state
arXiv:1410.6337 · doi:10.1103/PhysRevC.91.055807
Abstract
Nucleon self-energies and interaction potentials in supernova (SN) matter, which are known to have an important effect on nucleosynthesis conditions in SN ejecta are investigated. Corresponding weak charged-current interaction rates with unbound nucleons that are consistent with existing SN equations of state (EOSs) are specified. The nucleon self-energies are made available online as electronic tables. The discussion is mostly restricted to relativistic mean-field models. In the first part of the article, the generic properties of this class of models at finite temperature and asymmetry are studied. It is found that the quadratic expansion of the EOS in terms of asymmetry works reasonably well at finite temperatures and deviations originate mostly from the kinetic part. The interaction part of the symmetry energy is found to be almost temperature independent. At low densities, the account of realistic nucleon masses requires the introduction of a linear term in the expansion. Finally, it is shown that the important neutron-to-proton potential difference is given approximately by the asymmetry of the system and the interaction part of the zero-temperature symmetry energy. The results of different interactions are then compared with constraints from nuclear experiments and thereby the possible range of the potential difference is limited. In the second part, for a certain class of SN EOS models, the formation of nuclei is considered. Only moderate modifications are found for the self-energies of unbound nucleons that enter the weak charged-current interaction rates. This is because in the present approach the binding energies of bound states do not contribute to the single-particle energies of unbound nucleons.
25 pages, 12 figures, v3: editorial corrections, matches published version
References in corpus (22)
- Neutron-Rich Nuclei in Heaven and Earth
- Relativistic Mean-Field Hadronic Models under Nuclear Matter Constraints
- Relativistic effective interaction for nuclei, giant resonances, and neutron stars
- Building relativistic mean field models for finite nuclei and neutron stars
- Nucleosynthesis-relevant conditions in neutrino-driven supernova outflows. I. Spherically symmetric hydrodynamic simulations
- Symmetry energy of dilute warm nuclear matter
- Integrated Nucleosynthesis in Neutrino Driven Winds
- Symmetry Energy of Nucleonic Matter With Tensor Correlations
- A Second Relativistic Mean Field and Virial Equation of State for Astrophysical Simulations
- Influence of light nuclei on neutrino-driven supernova outflows
- Appearance of Light Clusters in Post-bounce Evolution of Core-Collapse Supernovae
- The High-Density Symmetry Energy and Direct Urca
- Stellar electron-capture rates calculated with the finite-temperature relativistic random-phase approximation
- A comparative study of statistical models for nuclear equation of state of stellar matter
- From the lightest nuclei to the equation of state of asymmetric nuclear matter with realistic nuclear interactions
- Neutrino Breakup of A=3 Nuclei in Supernovae
- Thermal properties of asymmetric nuclear matter with an improved isospin- and momentum-dependent interaction
- Constraining supernova equations of state with equilibrium constants from heavy-ion collisions
- Thermal Properties of Asymmetric Nuclear Matter
- Charged-current reactions in the supernova neutrino-sphere
- Charged current neutrino interactions in core-collapse supernovae in a virial expansion
- Probing the momentum-dependence of the symmetry potential by the free n/p ratio of preequilibrium emission
Cited by in corpus (13)
- Heavy axion-like particles and core-collapse supernovae: constraints and impact on the explosion mechanism
- Supernova Simulations Confront SN 1987A Neutrinos
- Proto-neutron stars as cosmic factories for massive axion-like-particles
- Role of medium modifications for neutrino-pair processes from nucleon-nucleon bremsstrahlung - Impact on the protoneutron star deleptonization
- Comprehensive constraints on heavy sterile neutrinos from core-collapse supernovae
- Impact of Nucleon-Nucleon Bremsstrahlung Rates Beyond One-Pion Exchange
- Medium modifications for light and heavy nuclear clusters in simulations of core collapse supernovae -- Impact on equation of state and weak interactions
- Towards generating a new supernova equation of state: A systematic analysis of cold hybrid stars
- Probing axion-like particles with multimessenger observations of neutron star mergers
- Do Finite Density Effects Jeopardize Axion Nucleophobia in Supernovae?
- Effect of Magnetic Fields on Urca Rates in Neutron Star Mergers
- Open-source library for performance-portable neutrino reaction rates: Application to neutron star mergers
- Axion signatures from supernova explosions through the nucleon electric-dipole portal