Physics input for modelling superfluid neutron stars with hyperon cores
arXiv:1401.2827 · doi:10.1093/mnras/stt2438
Abstract
Observations of massive () neutron stars (NSs), PSRs J1614-2230 and J0348+0432, rule out most of the models of nucleon-hyperon matter employed in NS simulations. Here we construct three possible models of nucleon-hyperon matter consistent with the existence of pulsars as well as with semi-empirical nuclear matter parameters at saturation, and semi-empirical hypernuclear data. Our aim is to calculate for these models all the parameters necessary for modelling dynamics of hyperon stars (such as equation of state, adiabatic indices, thermodynamic derivatives, relativistic entrainment matrix, etc.), making them available for a potential user. To this aim a general non-linear hadronic Lagrangian involving meson fields, as well as quartic terms in vector-meson fields, is considered. A universal scheme for calculation of the Landau Fermi-liquid parameters and relativistic entrainment matrix is formulated in the mean-field approximation. Use of this scheme allow us to obtain numerical tables with the equation of state, Landau quasiparticle effective masses, adiabatic indices, the Landau Fermi-liquid parameters, and the relativistic entrainment matrix for the selected models of nucleon-hyperon matter. These data are available on-line and suitable for numerical implementation in computer codes modelling various dynamical processes in NSs, in particular, oscillations of superfluid NSs and their cooling.
21 pages, 8 figures, 10 tables, accepted for publication in MNRAS
References in corpus (11)
- Shapiro delay measurement of a two solar mass neutron star
- A Massive Pulsar in a Compact Relativistic Binary
- Influence of the hadronic equation of state on the hadron-quark phase transition in neutron stars
- Bulk viscosity of superfluid neutron stars
- Double- hypernuclei in the relativistic mean-field theory
- The relativistic entrainment matrix of a superfluid nucleon-hyperon mixture at zero temperature
- Bulk viscosity of superfluid hyperon stars
- Strangeness-driven phase transition in (proto)- neutron star matter
- The relativistic entrainment matrix of a superfluid nucleon-hyperon mixture. II. Effect of finite temperatures
- Damping of sound waves in superfluid nucleon-hyperon matter of neutron stars
- Role of nonlinear vector meson interactions in hyperon stars
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