Pasta Nucleosynthesis: Molecular dynamics simulations of nuclear statistical equilibrium
arXiv:1412.8502 · doi:10.1103/PhysRevC.91.065802
Abstract
Background: Exotic non-spherical nuclear pasta shapes are expected in nuclear matter at just below saturation density because of competition between short range nuclear attraction and long range Coulomb repulsion. Purpose: We explore the impact of nuclear pasta on nucleosynthesis, during neutron star mergers, as cold dense nuclear matter is ejected and decompressed. Methods: We perform classical molecular dynamics simulations with 51200 and 409600 nucleons, that are run on GPUs. We expand our simulation region to decompress systems from an initial density of 0.080 fm^{-3} down to 0.00125 fm^{-3}. We study proton fractions of Y_P=0.05, 0.10, 0.20, 0.30, and 0.40 at T =0.5, 0.75, and 1.0 MeV. We calculate the composition of the resulting systems using a cluster algorithm. Results: We find final compositions that are in good agreement with nuclear statistical equilibrium models for temperatures of 0.75 and 1 MeV. However, for proton fractions greater than Y_P=0.2 at a temperature of T = 0.5 MeV, the MD simulations produce non-equilibrium results with large rod-like nuclei. Conclusions: Our MD model is valid at higher densities than simple nuclear statistical equilibrium models and may help determine the initial temperatures and proton fractions of matter ejected in mergers.
13 pages
References in corpus (25)
- The r-process of stellar nucleosynthesis: Astrophysics and nuclear physics achievements and mysteries
- Binary and Millisecond Pulsars
- On the astrophysical robustness of neutron star merger r-process
- R-Process Nucleosynthesis in Dynamically Ejected Matter of Neutron Star Mergers
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- Neutrino-pasta scattering: the opacity of nonuniform neutron-rich matter
- Disordered nuclear pasta, magnetic field decay, and crust cooling in neutron stars
- Dynamical response of the nuclear pasta in neutron star crusts
- A highly resistive layer within the crust of X-ray pulsars limits their spin periods
- Nonuniform Neutron-Rich Matter and Coherent Neutrino Scattering
- Nuclear Pasta Formation
- Torus Formation in Neutron Star Mergers and Well-Localized Short Gamma-Ray Bursts
- Nuclear Waffles
- Appearance of the Single Gyroid Network Phase in Nuclear Pasta Matter
- Topological characterization of neutron star crusts
- Three dimensional structure of low-density nuclear matter
- The Shear Viscosity and Thermal Conductivity of Nuclear Pasta
- Gyroid Phase in Nuclear Pasta
- Equation of State of nuclear matter in a Virial expansion of nucleons and nuclei
- Nucleosynthesis in Supernovae
- Effect of Coulomb Screening Length on Nuclear Pasta Simulations
- Beyond Nuclear Pasta: Phase Transitions and Neutrino Opacity of Non-Traditional Pasta
- Study of system- size effects in multi- fragmentation using Quantum Molecular Dynamics model
- Supernova SN1987A Bound on Neutrino Spectra for R-Process Nucleosynthesis
- Finite size effects in Neutron Star and Nuclear matter simulations
Cited by in corpus (21)
- Astromaterial Science and Nuclear Pasta
- Nuclear Equation of state for Compact Stars and Supernovae
- Impact of the neutron star crust on the tidal polarizability
- Extension of nuclear landscape to hyperheavy nuclei
- Quantum Nuclear Pasta and Nuclear Symmetry Energy
- Impact of the neutron-star deformability on equation of state parameters
- Effect of topological defects on "nuclear pasta" observables
- Electron transport through nuclear pasta in magnetized neutron stars
- Fast neutrino cooling of nuclear pasta in neutron stars: molecular dynamics simulations
- Quantum Simulations of Nuclei and Nuclear Pasta with the Multi-resolution Adaptive Numerical Environment for Scientific Simulations
- Domains and defects in nuclear "pasta"
- Glassy quantum nuclear pasta in neutron star crusts
- Probing crustal structures from neutron star compactness
- Quasi-periodic oscillations in superfluid, relativistic magnetars with nuclear pasta phases
- Nuclear pasta and supernova neutrinos at late times
- Constraints on Skyrme Equations of State from Doubly Magic Nuclei, Ab-Initio Calculations of Low-Density Neutron Matter, and Neutron Stars
- Thermal Fluctuations in Nuclear Pasta
- Dynamics of Fragment Formation in Neutron Rich Matter
- Fine structure of giant resonances: What can be learned
- Towards a novel energy density functional for beyond-mean-field calculations with pairing and deformation
- Fragmentation of Neutron Star Matter