A key factor to the spin parameter of uniformly rotating compact stars: crust structure
arXiv:1408.1654 · doi:10.1088/1674-4527/16/4/060
Abstract
We study the key factor to determine the dimensionless spin parameter of different kinds of uniformly rotating compact stars, including the traditional neutron stars, hyperonic neutron stars, and hybrid stars, and check the reliability of the results on various types of equations of state of dense matter. The equations of state from the relativistic mean field theory and the MIT bag model are adopted to simulate compact stars. Numerical calculations of rigidly rotating neutron stars are performed using the RNS code in the framework of general relativity by solving the Einstein equations for stationary axis-symmetric spacetime. The crust structure of compact stars is found to be a key factor to determine the maximum value of the spin parameter . For the stars with inclusion of the crust, is sustained for various kinds of compact stars with , and is found to be insensitive to the mass of star and selected equations of state. For the traditional neutron stars, hyperonic neutron stars and hybrid stars without crust structure, the value lies in the range of . Thus, not but could be treated as the candidate criterion to distinguish the strange quark stars from the other kinds of compact stars. Furthermore, a universal formula is suggested to calculate the spin parameter at any rotational frequency for all kinds of compact stars with crust structure and .
6 pages, 4 figures, 2 tables
References in corpus (6)
- Neutron Star Observations: Prognosis for Equation of State Constraints
- Relativistic Continuum Hartree Bogoliubov Theory for Ground State Properties of Exotic Nuclei
- Evidence for 1122 Hz X-Ray Burst Oscillations from the Neutron-Star X-Ray Transient XTE J1739-285
- Fast Rotating Neutron Stars with Realistic Nuclear Matter Equation of State
- Hyperon effects in covariant density functional theory with recent astrophysical observations
- Mass-angular-momentum relations implied by models of twin peak quasi-periodic oscillations
Cited by in corpus (3)
- Unified nuclear matter EOSs constrained by the in-medium balance in density-dependent covariant density functionals
- Moments of inertia of neutron stars in relativistic mean field theory: the role of the isovector scalar channel
- Properties and microscopic structures of dense stellar matter in RMF models