Context. A recent measurement of the mass of PSR J1614-2230 rules out most existing models of the equation of state (EOS) of dense matter that is subjected to the high-density softening caused by either hyperonization or a phase transition to either quark matter or a boson condensate. Aims. We attempt to resolve the apparent differences between the predictions derived from up-to-date hypernuclear data, which include the appearance of hyperons at about three nuclear densities and the existence of a M = 2.0 M⊙ neutron star. Methods. We consider a non-linear relativistic mean field (RMF) model involving the baryon octet coupled to meson fields. An effective Lagrangian includes quartic terms in the meson fields. The values of t...
The measurement of the mass 1.97 ± 0.04 Msun for PSR J1614-2230 provides a new constraint on the equ...
In order to calculate neutron-star properties, it is necessary to have an Equation of State (EOS) li...
We obtain a new equation of state for the nucleonic and hyperonic inner core of neutron stars that f...
Context. A recent measurement of the mass of PSR J1614-2230 rules out most existing models of the eq...
Context. A recent measurement of the mass of PSR J1614-2230 rules out most existing models of the eq...
There is currently tremendous interest in the role of hyperons and other exotic forms of matter in n...
There is currently tremendous interest in the role of hyperons and other exotic forms of matter in n...
Context. The existence of 2 M⊙ pulsars puts very strong constraints on the equation of state (EOS) o...
Context. The existence of 2 M⊙ pulsars puts very strong constraints on the equation of state (EOS) o...
Context. The recent measurement of mass of PSR J1614-2230 rules out most existing models o...
Context. The recent measurement of mass of PSR J1614-2230 rules out most existing models o...
Context. The recent measurement of mass of PSR J1614-2230 rules out most existing models o...
International audienceFor core-collapse and neutron star merger simulations it is important to have ...
Hyperons are essential constituents in the neutron star interior. The poorly-known hyperonic interac...
We study the equation of state (EOS) of the dense matter in the core of neutron stars with hyperons ...
The measurement of the mass 1.97 ± 0.04 Msun for PSR J1614-2230 provides a new constraint on the equ...
In order to calculate neutron-star properties, it is necessary to have an Equation of State (EOS) li...
We obtain a new equation of state for the nucleonic and hyperonic inner core of neutron stars that f...
Context. A recent measurement of the mass of PSR J1614-2230 rules out most existing models of the eq...
Context. A recent measurement of the mass of PSR J1614-2230 rules out most existing models of the eq...
There is currently tremendous interest in the role of hyperons and other exotic forms of matter in n...
There is currently tremendous interest in the role of hyperons and other exotic forms of matter in n...
Context. The existence of 2 M⊙ pulsars puts very strong constraints on the equation of state (EOS) o...
Context. The existence of 2 M⊙ pulsars puts very strong constraints on the equation of state (EOS) o...
Context. The recent measurement of mass of PSR J1614-2230 rules out most existing models o...
Context. The recent measurement of mass of PSR J1614-2230 rules out most existing models o...
Context. The recent measurement of mass of PSR J1614-2230 rules out most existing models o...
International audienceFor core-collapse and neutron star merger simulations it is important to have ...
Hyperons are essential constituents in the neutron star interior. The poorly-known hyperonic interac...
We study the equation of state (EOS) of the dense matter in the core of neutron stars with hyperons ...
The measurement of the mass 1.97 ± 0.04 Msun for PSR J1614-2230 provides a new constraint on the equ...
In order to calculate neutron-star properties, it is necessary to have an Equation of State (EOS) li...
We obtain a new equation of state for the nucleonic and hyperonic inner core of neutron stars that f...