On the validity of the Wigner-Seitz approximation in neutron star crust
arXiv:astro-ph/0701851 · doi:10.1103/PhysRevC.75.055806
Abstract
The inner crust of neutron stars formed of nuclear clusters immersed in a neutron sea has been widely studied in the framework of the Wigner-Seitz approximation since the seminal work of Negele and Vautherin. In this article, the validity of this approximation is discussed in the framework of the band theory of solids. For a typical cell of Zr, present in the external layers of the inner crust, it is shown that the ground state properties of the neutron gas are rather well reproduced by the Wigner-Seitz approximation, while its dynamical properties depend on the energy scale of the process of interest or on the temperature. It is concluded that the Wigner-Seitz approximation is well suited for describing the inner crust of young neutron stars and the collapsing core of massive stars during supernovae explosions. However the band theory is required for low temperature fluid dynamics.
7 pages, with figures - PTH, version 2
Cited by in corpus (36)
- Neutron conduction in the inner crust of a neutron star in the framework of the band theory of solids
- Inner crust of neutron stars with mass-fitted Skyrme functionals
- Semi-classical equation of state and specific heats for neutron-star inner crust with proton shell corrections
- Superfluidity and Superconductivity in Neutron Stars
- Low-energy collective excitations in the neutron star inner crust
- The Neutron Star Crust: Nuclear Physics Input
- Neutron drip transition in accreting and nonaccreting neutron star crusts
- Nuclear matter in the crust of neutron stars derived from realistic NN interactions
- Unified equations of state for cold non-accreting neutron stars with Brussels-Montreal functionals. II. Pasta phases in semi-classical approximation
- Vortex-nucleus interaction in the inner crust of neutron stars
- Entrainment in Superfluid Neutron Star Crusts: Hydrodynamic Description and Microscopic Origin
- Unified description of neutron superfluidity in the neutron-star crust with analogy to anisotropic multi-band BCS superconductors
- Time-dependent extension of the self-consistent band theory for neutron star matter: Anti-entrainment effects in the slab phase
- A new statistical method for the structure of the inner crust of neutron stars
- Role of the symmetry energy on the neutron-drip transition in accreting and nonaccreting neutron stars
- Wigner-Seitz cells in neutron star crust with finite range interactions
- Comparison between the Thomas-Fermi and Hartree-Fock-Bogoliubov Methods in the Inner Crust of a Neutron Star: The Role of Pairing Correlations
- Neutron specific heat in the crust of neutron stars from the nuclear band theory
- Nuclei embedded in an electron gas
- Collective, glitch-like vortex motion in a neutron star with an annular pinning barrier
- Unified equations of state for cold nonaccreting neutron stars with Brussels-Montreal functionals. V. Improved parametrization of the nucleon density distributions
- The proto-neutron star inner crust in the liquid phase
- Superfluid extension of the self-consistent time-dependent band theory for neutron star matter: Anti-entrainment versus superfluid effects in the slab phase
- Pairing properties and specific heat of the inner crust of a neutron star
- Temperature-dependent nuclear partition functions and abundances in stellar interior
- Superfluid fraction in the crystalline crust of a neutron star: role of BCS pairing
- Upper edge of the neutron star crust : the drip point and around
- Mass fractions in stellar interior during presupernova evolution
- Role of neutron pairing with density-gradient dependence in the semi-microscopic treatment of the inner crust of neutron stars
- Pairing correlations of cold fermionic gases at overflow from a narrow to a wide harmonic trap
- Neutron Star Inner Crust at Finite Temperatures: A Comparison Between Compressible Liquid Drop and Extended Thomas-Fermi Approaches
- Pairing properties of the inner crust of neutron stars at finite temperature
- Pressure and chemical potentials in the inner crust of a cold neutron star within Hartree-Fock and extended Thomas-Fermi methods
- On variational trial functions in the extended Thomas-Fermi method
- Fermi Operator Expansion for the Hartree-Fock-Bogoliubov Theory
- Superfluid fraction in the crystalline crust of a neutron star: role of quantum zero-point motion of ions