New code for quasiequilibrium initial data of binary neutron stars: Corotating, irrotational and slowly spinning systems
Abstract
We present the extension of our \cocal~- Compact Object CALculator - code to compute general-relativistic initial data for binary compact-star systems. In particular, we construct quasiequilibrium initial data for equal-mass binaries with spins that are either aligned or antialigned with the orbital angular momentum. The Isenberg-Wilson-Mathews formalism is adopted and the constraint equations are solved using the representation formula with a suitable choice of a Green's function. We validate the new code with solutions for equal-mass binaries and explore its capabilities for a wide range of compactnesses, from a white dwarf binary with compactness , up to a highly relativistic neutron-star binary with compactness . We also present a comparison with corotating and irrotational quasiequilibrium sequences from the spectral code \lorene [Taniguchi and Gourgoulhon, Phys. Rev. D {\bf 66}, 104019 (2002)] and with different compactness, showing that the results from the two codes agree to a precision of the order of . Finally, we present equilibria for spinning configurations with a nuclear-physics equation of state in a piecewise polytropic representation.
Keywords
Cite
@article{arxiv.1502.05674,
title = {New code for quasiequilibrium initial data of binary neutron stars: Corotating, irrotational and slowly spinning systems},
author = {Antonios Tsokaros and Koji Uryu and Luciano Rezzolla},
journal= {arXiv preprint arXiv:1502.05674},
year = {2015}
}
Comments
Final version