Global properties of rotating neutron stars with QCD equations of state
arXiv:1605.08067 · doi:10.3847/0004-637X/832/1/28
Abstract
We numerically investigate global properties of rotating neutron stars using the allowed band of QCD equations of state derived by Kurkela et al. This band is constrained by chiral effective theory at low densities and perturbative QCD at high densities, and is thus, in essence, a controlled constraint from first-principles physics. Previously, this band of equations of state was used to investigate non-rotating neutron stars only; in this work, we extend these results to any rotation frequency below the mass-shedding limit. We investigate mass--radius curves, allowed mass--frequency regions, radius--frequency curves for a typical 1.4-solar-mass star, and the values of the moment of inertia of the double pulsar PSR J0737-3039A, a pulsar whose moment of inertia may be constrained observationally in a few years. We present limits on observational data coming from these constraints, and identify values of observationally-relevant parameters that would further constrain the allowed region for the QCD equation of state. We also discuss how much this region would be constrained by a measurement of the moment of inertial of the double pulsar PSR J0737-3039A.
5 pages, 5 figures; v2: discussion of Figure 1 updated with added references, Figure 2 updated, matches accepted journal version
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- Constraints on the moment of inertia of PSR J0737-3039A from GW170817
- Constraining the dense matter equation-of-state with radio pulsars
- GW170817 constraints on the properties of a neutron star in the presence of WIMP dark matter
- Probing the Impact of WIMP Dark Matter on Universal Relations, GW170817 Posterior and Radial Oscillations
- Renormalization group improved pressure for cold and dense QCD
- Neutron stars and stellar mergers as a laboratory for dense QCD matter
- Lepton-rich cold QCD matter in protoneutron stars