On the maximum mass of hyperonic neutron stars
arXiv:1201.2772 · doi:10.1209/0295-5075/97/39002
Abstract
Chiral Lagrangian and quark-meson coupling models of hyperon matter are used to estimate the maximum mass of neutron stars. Our relativistic calculations include, for the first time, both Hartree and Fock contributions in a consistent manner. Being related to the underlying quark structure of baryons, these models are considered to be good candidates for describing the dense core of neutron stars. Taking account of the known experimental constraints at saturation density, the equations of state deduced from these relativistic approaches cannot sustain a neutron star with a mass larger than 1.6-1.66 .
Cited by in corpus (40)
- QCD and strongly coupled gauge theories: challenges and perspectives
- Hyperon Puzzle: Hints from Quantum Monte Carlo Calculations
- Can very compact and very massive neutron stars both exist?
- Competition between delta isobars and hyperons and properties of compact stars
- Constraining hypernuclear density functional with -hypernuclei and compact stars
- Energy density functional for nuclei and neutron stars
- Heavy Baryons in Compact Stars
- Quark-Meson-Coupling (QMC) model for finite nuclei, nuclear matter and beyond
- Effects of the two-body and three-body hyperon-nucleon interactions in Λ-hypernuclei
- Delta isobars in relativistic mean-field models with -scaled hadron masses and couplings
- Equation of state for neutron stars with hyperons by the variational method
- Quark magnetar in three-flavor Nambu--Jona-Lasinio model with vector interaction and magnetized gluon potential
- Relativistic Mean-Field Models with Scaled Hadron Masses and Couplings: Hyperons and Maximum Neutron Star Mass
- An extended equation of state for core-collapse simulations
- Quark-Meson Coupling Model, Nuclear Matter Constraints and Neutron Star Properties
- Neutron star atmosphere composition: the quiescent, low-mass X-ray binary in the globular cluster M28
- EoS for massive neutron stars
- Hypernuclear stars from relativistic Hartree-Fock density functional theory
- Leading order relativistic hyperon-nucleon interactions in chiral effective field theory
- Constraining compact star properties with nuclear saturation parameters
- Strangeness hyperon-nucleon interactions: chiral effective field theory vs. lattice QCD
- Phenomenological neutron star equations of state: 3-window modeling of QCD matter
- Phase transition towards strange matter
- The properties of the neutron star PSR J0348+0432
- Massive neutron stars with hyperonic core : a case study with the IUFSU model
- Hyperon threshold and stellar radii
- Probing the metastability of protoneutron star with hyperon in core-collapse supernova
- Meson-baryon scattering up to the next-to-next-to-leading order in covariant baryon chiral perturbation theory
- Massive relativistic compact stars from SU(3) symmetric quark models
- Examination of the influence of the f(975) and (1020) mesons on the surface gravitional redshift of the neutron star PSR J0348+0432
- Auxiliary Field Diffusion Monte Carlo study of the Hyperon-Nucleon interaction in -hypernuclei
- Comparison of different relativistic models applied to dense nuclear matter
- From hypernuclei to the Inner Core of Neutron Stars: A Quantum Monte Carlo Study
- Multinucleon excitations in neutrino-nucleus scattering: connecting different microscopic models for the correlations
- Phase diagram of neutron-rich nuclear matter and its impact on astrophysics
- Light and hyper nuclei formation at 3 GeV Au+Au collisions using Wigner coalescence approach
- Meson effect in the proto neutron star PSR J0348+0432
- Some aspects of the phase diagram of nuclear matter relevant to compact stars
- The EOS of neutron matter and the effect of hyperons to neutron star structure
- From QCD phenomenology to nuclear physics phenomenology: the chiral confining model