PaperPanorama

Nuclear Theory·nucl-th

Wednesday·December 31, 2014

6 papers3 primary·3 cross-listed

  1. 01

    Pasta Nucleosynthesis: Molecular dynamics simulations of nuclear statistical equilibrium

    M. E. Caplan · A. S. Schneider · C. J. Horowitz · D. K. Berry

    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.

    nucl-thastro-ph.HEPRC(2015)·27 citations
  2. 02

    The emergent dynamical symmetry at the triple point of nuclear deformations

    Yu Zhang · Feng Pan · Yu-xin Liu · Yan-an Luo · J. P. Draayer

    Based on the boson realization of the Euclidean algebras, it is shown that the five-dimensional Euclidean dynamical symmetry may emerge at the triple point of the shape phase diagram of the interacting boson model, which thus offers a symmetry-based understanding of this isolated point. It is further shown that the low-lying dynamics in Pd, Ba, Zn, and Cd may be dominated by the Euclidean dynamical symmetry.

    nucl-thPRC(2014)·15 citations
  3. 03

    Hypernuclei and the hyperon problem in neutron stars

    Paulo F. Bedaque🇺🇸 · Andrew W. Steiner🇺🇸

    The likely presence of baryons in dense hadronic matter tends to soften the equation of state to an extend that the observed heaviest neutron stars are difficult to explain. We analyze this "hyperon problem" with a phenomenological approach. First, we review what can be learned about the interaction of particle with dense matter from the observed hypernuclei and extend this phenomenological analysis to asymmetric matter. We add to this the current knowledge on non-strange dense matter, including its uncertainties, to conclude that the interaction between s and dense matter has to become repulsive at densities below three times the nuclear saturation density.

    nucl-thPRC(2015)·20 citations

Affiliations

first authorsco-authorsvia INSPIRE