Inner crusts of neutron stars in strongly quantising magnetic fields
arXiv:1012.5970 · doi:10.1088/0004-637X/736/2/156
Abstract
We study the properties and stability of nuclei in the inner crust of neutron stars in the presence of strong magnetic fields G. Nuclei coexist with a neutron gas and reside in a uniform gas of electrons in the inner crust. This problem is investigated within the Thomas-Fermi model. We extract the properties of nuclei based on the subtraction procedure of Bonche, Levit and Vautherin. The phase space modification of electrons due to Landau quantisation in the presence of strong magnetic fields leads to the enhancement of electron as well as proton fractions at lower densities fm. We find the equilibrium nucleus at each average baryon density by minimising the free energy and show that, in the presence of strong magnetic fields, it is lower than that in the field free case. The size of the spherical cell that encloses a nucleus along with the neutron and electron gases becomes smaller in strong magnetic fields compared with the zero field case. Nuclei with larger mass and atomic numbers are obtained in the presence of strong magnetic fields as compared with cases of zero field.
21 pages including 8 figures
References in corpus (6)
- The r-process of stellar nucleosynthesis: Astrophysics and nuclear physics achievements and mysteries
- Constraints on Neutron Star Crusts From Oscillations in Giant Flares
- Maximum gravitational-wave energy emissible in magnetar flares
- Neutron star oscillations and QPOs during magnetar flares
- The Neutron Star Crust: Nuclear Physics Input
- Nuclei embedded in an electron gas
Cited by in corpus (18)
- Phases of dense matter in compact stars
- Properties of the outer crust of strongly magnetized neutron stars from Hartree-Fock-Bogoliubov atomic mass models
- Role of crustal physics in the tidal deformation of a neutron star
- Outer crust of a cold non-accreting magnetar
- Glitch Behavior of Pulsars and Contribution from Neutron Star Crust
- Role of Landau-Rabi quantization of electron motion on the crust of magnetars within the nuclear energy density functional theory
- Revised density of magnetized nuclear matter at the neutron drip line
- Magnetised neutron star crust within effective relativistic mean-field model
- Strong magnetic fields and pasta phases revisited
- Anisotropic electron transport in the nuclear pasta phase
- Pasta phases in neutron stars under strong magnetic fields
- Statistical treatment of nuclear clusters in the continuum
- Impact of strong magnetic fields on the inner crust of neutron stars
- Role of nuclear physics in oscillations of magnetars
- Neutron Stars: Laboratories for fundamental physics under extreme astrophysical conditions
- Magnetised Neutron Star Crusts and Torsional Shear Modes of Magnetars
- Nuclei in Strongly Magnetised Neutron Star Crusts
- Effect of quantizing magnetic field on the inner crusts of hot Neutron Stars