Unmasking neutron star interiors using cooling simulations
arXiv:astro-ph/0612092 · doi:10.1016/j.ppnp.2006.12.035
Abstract
We introduce a new tool for 'unmasking' the composition of neutron star (NS) interiors which is based on the fact that the state of matter at high densities determines the statistics of both NS observables, the temperature-age (TA) data as well as the mass distribution. We use modern cooling simulations to extract distributions of NS masses required to reproduce those of the yet sparse data in the TA plane. By comparing the results with a mass distribution for young, nearby NSs from population synthesis we can sharpen two NS cooling problems. The direct Urca (DU) problem consists in a narrowing of the NS population at the mass value for which the DU process as the most effective cooling mechanism in the hadronic layer of the star can occur. The Vela mass problem is a broadening of the population beyond the range of the typical mass window of 1.1 - 1.5 M_sun. Applying this tool to modern EoS we discuss examples for pure hadronic stars which are in conflict with these constraints while hybrid stars with a color superconducting quark matter core can predict a satisfactory mass distribution, provided the smallest diquark pairing gap has a properly defined density dependence.
8 pages, 8 figures, Proceedings of the Erice School on 'Radioactive Beams, Nuclear Dynamics and Astrophysics' to be published in 'Prog. Part. Nucl. Phys.'
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Cited by in corpus (17)
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- Anisotropic Hydrodynamics, Bulk Viscosities and R-Modes of Strange Quark Stars with Strong Magnetic Fields
- Finite-size effects at the hadron-quark transition and heavy hybrid stars
- Hybrid stars within a covariant, nonlocal chiral quark model
- Quark-nuclear hybrid equation of state for neutron stars under modern observational constraints
- Sequential deconfinement of quark flavors in neutron stars
- Influence of the stiffness of the equation of state and in-medium effects on the cooling of compact stars
- Cassiopeia A and direct URCA cooling
- Phase diagram of chiral quark matter: Fulde-Ferrell pairing from weak to strong coupling
- Quark matter in neutron stars
- Thermal evolution of massive compact objects with dense quark cores
- Neutrino emissivities and bulk viscosity in neutral two-flavor quark matter
- Neutron star cooling and mass distributions
- Cooling of dark neutron stars
- Equation of state at high densities and modern compact star observations
- Impact of Multiple Phase Transitions in Dense QCD on Compact Stars
- 1-2-3-flavor color superconductivity in compact stars