Neutron Stars with Hyperons subject to Strong Magnetic Field
arXiv:1202.5016 · doi:10.1007/s13538-012-0093-y
Abstract
Neutron stars are one of the most exotic objects in the universe and a unique laboratory to study the nuclear matter above the nuclear saturation density. In this work, we study the equation of state of the nuclear matter within a relativistic model subjected to a strong magnetic field. We then apply this EoS to study and describe some of the physical characteristics of neutron star, especially the mass-radius relation and chemical compositions. To study the influence of a the magnetic field and the hyperons in the stellar interior, we consider altogether four solutions: two different values of magnetic field to obtain a weak and a strong influence, and two configurations: a family of neutron stars formed only by protons, electrons and neutrons and a family formed by protons, electrons, neutrons, muons and hyperons. The limit and the validity of the results found are discussed with some care. In all cases the particles that constitute the neutron star are in equilibrium and zero total net charge. Our work indicates that the effect of a strong magnetic field has to be taken into account in the description of magnetars, mainly if we believe that there are hyperons in their interior, in which case, the influence of the magnetic field can increase the mass by more than 10%. We have also seen that although a magnetar can reach 2.48, a natural explanation of why we do not know pulsars with masses above 2.0 arises. We also discuss how the magnetic field affects the strangeness fraction in some standard neutron star masses and, to conclude our paper, we revisit the direct URCA process related to the cooling of the neutron stars and show how it is affected by the hyperons and the magnetic field.
16 pages, 8 figures
References in corpus (5)
- Shapiro delay measurement of a two solar mass neutron star
- Neutron star properties and the symmetry energy
- Stellar matter with a strong magnetic field within density-dependent relativistic models
- The physics of strong magnetic fields in neutron stars
- The importance of the mixed phase in hybrid stars built with the Nambu-Jona-Lasinio model
Cited by in corpus (33)
- Consistent neutron star models with magnetic field dependent equations of state
- Bulk Properties of a Fermi Gas in a Magnetic Field
- Equation of State for Nucleonic and Hyperonic Neutron Stars with Mass and Radius Constraints
- Hypernuclear matter in a complete SU(3) symmetry group
- Magnetic Neutron Stars in f(R) gravity
- The influence of strong magnetic fields on proto-quark stars
- Hadronic and hybrid stars subject to density dependent magnetic fields
- Expansion of magnetic neutron stars in an energy (in)dependent spacetime
- Stability windows for proto-quark stars
- Deformation of a magnetized neutron star
- Broken SU(6) symmetry and massive hybrid stars
- A Neutron Star is born
- On Magnetized Neutron Stars
- Many-body forces in magnetic neutron stars
- Role of vector channel in different classes of (non) magnetized neutron stars
- Erratum: Anisotropy in the EoS of Magnetized Quark Matter [Phys Rev C91, 065205 (2015)]
- Gravitational Wave Signatures of Highly Magnetized Neutron Stars
- The Rarita-Schwinger Particles Under de Influence of Strong Magnetic Fields
- Quark matter under strong magnetic fields
- Structure of ultra-magnetised neutron stars
- Exploring the effects of Delta Baryons in magnetars
- Hyperon threshold and stellar radii
- Effects of the Symmetry Energy and its Slope on Neutron Star Properties
- The neutron star inner crust: an empirical essay
- Saturation properties of nuclear matter in the presence of strong magnetic field
- Neutron stars including the effects of chaotic magnetic fields and the anomalous magnetic moments
- Properties of strongly magnetized ultradense matter and their imprints on magnetar pulsations
- Strongly interacting matter in extreme magnetic fields
- Probing into the Possible Range of the U Bosonic Coupling Constants in Neutron Stars Containing Hyperons
- Effects of the symmetry energy slope on magnetized neutron stars
- The population of highly magnetized neutron stars
- Highly magnetized neutron stars in a many-body forces formalism
- Antikaon condensation in magnetized neutron star matter within the framework of the -cut scheme