The surface of rapidly-rotating neutron stars: implications to neutron star parameter estimation
arXiv:2008.05565 · doi:10.1103/PhysRevD.103.063038
Abstract
The Neutron star Interior Composition Explorer (NICER) is currently observing the x-ray pulse profiles emitted by hot spots on the surface of rotating neutron stars allowing for an inference of their radii with unprecedented precision. A critical ingredient in the pulse profile model is an analytical formula for the oblate shape of the star. These formulas require a fitting over a large ensemble of neutron star solutions, which cover a wide set of equations of state, stellar compactnesses and rotational frequencies. However, this procedure introduces a source of systematic error, as (i) the fits do not describe perfectly the surface of all stars in the ensemble and (ii) neutron stars are described by a single equation of state, whose influence on the surface shape is averaged out during the fitting procedure. Here we perform a first study of this systematic error, finding evidence that it is subdominant relative to the statistical error in the radius inference by NICER. We also find evidence that the formula currently used by NICER can be used in the inference of the radii of rapidly rotating stars, outside of the formula's domain of validity. Moreover, we employ an accurate enthalpy-based method to locate the surface of numerical solutions of rapidly rotating neutron stars and a new highly accurate formula to describe their surfaces. These results can be used in applications that require an accurate description of oblate surfaces of rapidly rotating neutron stars.
20 pages, 12 figures, 7 tables, 1 appendix. (v2) Matches version published in Phys. Rev. D
References in corpus (21)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Shapiro delay measurement of a two solar mass neutron star
- A Massive Pulsar in a Compact Relativistic Binary
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- Neutron Star Observations: Prognosis for Equation of State Constraints
- A NICER view of PSR J0030+0451: Implications for the dense matter equation of state
- Neutron star tidal deformability and equation of state constraints
- Constraining the Neutron Star Mass-Radius Relation and Dense Matter Equation of State with NICER. I. The Millisecond Pulsar X-ray Data Set
- Three Millisecond Pulsars in FERMI LAT Unassociated Bright Sources
- Constraining the Neutron Star Mass-Radius Relation and Dense Matter Equation of State with NICER. II. Emission from Hot Spots on a Rapidly Rotating Neutron Star
- Pulse profiles of millisecond pulsars and their Fourier amplitudes
- The Oblate Schwarzschild Approximation for Light Curves of Rapidly Rotating Neutron Stars
- Direct Astrophysical Tests of Chiral Effective Field Theory at Supranuclear Densities
- Universality of the Acceleration Due to Gravity on the Surface of a Rapidly Rotating Neutron Star
- The direct cooling tail method for X-ray burst analysis to constrain neutron star masses and radii
- Observational appearance of rapidly rotating neutron stars: X-ray bursts, cooling tail method, and radius determination
- Light curves from highly compact neutron stars with spot size effect
- Waves in Thin Oceans on Oblate Neutron Stars
- Effects of the treatment of the mass quadrupole moment on ray-tracing applications for rapidly-rotating neutron stars
- Constraints on the Neutron Star Equation of State from GW170817
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- A NICER View of the Massive Pulsar PSR J0740+6620 Informed by Radio Timing and XMM-Newton Spectroscopy
- Constraining the Neutron Star Mass--Radius Relation and Dense Matter Equation of State with NICER. III. Model Description and Verification of Parameter Estimation Codes
- Neutron stars and the dense matter equation of state: from microscopic theory to macroscopic observations
- Rapidly rotating neutron stars: Universal relations and EOS inference
- Neutron star parameter constraints for accretion-powered millisecond pulsars from the simulated IXPE data
- Universal Relations for rapidly rotating neutron stars using supervised machine-learning techniques
- Constraining the magnetic field geometry of the millisecond pulsar PSR~J0030+0451 from joint radio, thermal X-ray and -ray emission
- A tight universal relation between the shape eccentricity and the moment of inertia for rotating neutron stars
- Exploring Waveform Variations among Neutron Star Ray-tracing Codes for Complex Emission Geometries
- Spheroidal force-free neutron star magnetospheres
- Spheroidal magnetic stars rotating in vacuum
- Parameter constraints for accreting millisecond pulsars with synthetic NICER data
- Scaling relations for the uncertainty in neutron star radius inferred from pulse profile modelling: the effect of spin rate
- Gravitational Redshift for Rapidly Rotating Neutron Stars
- Influence of the gravitational darkening effect on the spectrum of a hot, rapidly rotating neutron star
- Universal Relations for the Increase in the Mass and Radius of a Rotating Neutron Star
- Influence of the gravitational darkening effect on the spectrum of a hot, rapidly rotating neutron star. II. Iron lines
- Universal relation between dipole polarizability of finite nuclei and neutron-star compactness