Neutron stars in a Skyrme model with hyperons
arXiv:nucl-th/0407083 · doi:10.1140/epja/i2004-10142-5
Abstract
Available Skyrme parametrizations with hyperons are examined from the point of view of their suitability for applications to neutron stars. It is shown that the hyperons can attenuate or even remove the problem of ferromagnetic instability common to (nearly) all Skyrme parametrizations of the nucleon-nucleon interaction. At high density the results are very sensitive to the choice of the Lambda-Lambda interaction. The selected parameter sets are then used to obtain the resulting properties of both cold neutron stars and hot protoneutron stars. The general features known from other models are recovered.
27 pages, 9 figures
References in corpus (4)
- Gravitationally redshifted absorption lines in the X-ray burst spectra of a neutron star
- Landau parameters of nuclear matter in the spin and spin-isospin channels
- Lambda-Lambda bond energy from the Nijmegen potentials
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- On the appearance of hyperons in neutron stars
- Non-rotating and rotating neutron stars in the extended field theoretical model
- A study of Lambda hypernuclei within the Skyrme-Hartree-Fock Model
- Kaon Condensation in Neutron Stars with Skyrme-Hartree-Fock Models
- Equations of state and stability of color-superconducting quark matter cores in hybrid stars
- Consistent Skyrme parametrizations constrained by GW170817
- Hyperons and quarks in proto-neutron stars
- Stable configurations of hybrid stars with colour-flavour-locked core
- Effective interactions of hyperons and mass-radius relation of neutron stars
- Neutrino scattering rates in the presence of hyperons from a Skyrme model in the RPA approximation
- Correlations in hypernuclear matter
- Double-Lambda hypernuclei within a Skyrme-Hartree-Fock approach
- Exploring Hyperon Skyrme Forces in Multi- Hypernuclei and Neutron Star Matter
- Neutrino mean free path in neutron stars in the presence of hyperons