Pulse Shapes From Rapidly-Rotating Neutron Stars: Equatorial Photon Orbits
arXiv:astro-ph/0409261 · doi:10.1086/425857
Abstract
We demonstrate that fitted values of stellar radius obtained by fitting theoretical light curves to observations of millisecond period X-ray pulsars can significantly depend on the method used to calculate the light curves. The worst-case errors in the fitted radius are evaluated by restricting ourselves to the case of light emitted and received in the equatorial plane of a rapidly-rotating neutron star. First, using an approximate flux which is adapted to the one-dimensional nature of such an emission region, we show how pulse shapes can be constructed using an exact spacetime metric and fully accounting for time-delay effects. We compare this to a method which approximates the exterior spacetime of the star by the Schwarzschild metric, inserts special relativistic effects by hand, and neglects time-delay effects. By comparing these methods, we show that there are significant differences in these methods for some applications, for example pulse timing and constraining the stellar radius. In the case of constraining the stellar radius, we show that fitting the approximate pulse shapes to the full calculation yields errors in the fitted radius of as much as about +/- 10%, depending on the rotation rate and size of the star as well as the details describing the emitting region. However, not all applications of pulse shape calculations suffer from significant errors: we also show that the calculation of the soft-hard phase lag for a 1 keV blackbody does not strongly depend on the method used for calculating the pulse shapes.
13 pages, 8 figures. Accepted for publication in The Astrophysical Journal
Cited by in corpus (36)
- Rotating Stars in Relativity
- Thermonuclear burst oscillations
- The Oblate Schwarzschild Approximation for Light Curves of Rapidly Rotating Neutron Stars
- Surface Emission from Neutron Stars and Implications for the Physics of their Interiors
- Light Curves for Rapidly-Rotating Neutron Stars
- Unveiling the thermal and magnetic map of neutron star surfaces though their X-ray emission: method and lightcurves analysis
- Limits on Mass and Radius for the ms-Period X-ray Pulsar SAX J1808.4-3658
- Radiation from rapidly rotating oblate neutron stars
- Constraints on the Properties of the Neutron Star XTE J1814-338 from Pulse Shape Models
- Accretion-powered millisecond pulsars
- Constraints on the Mass and Radius of the Neutron Star XTE J1807-294
- A Ray-Tracing Algorithm for Spinning Compact Object Spacetimes with Arbitrary Quadrupole Moments. II. Neutron Stars
- On parametrised cold dense matter equation of state inference
- Rotational Broadening of Atomic Spectral Features from Neutron Stars
- Multi-epoch Analysis of Pulse Shapes from the Neutron Star SAX J1808.4-3658
- The surface of rapidly-rotating neutron stars: implications to neutron star parameter estimation
- Light curves of oscillating neutron stars
- Pulse profiles of highly compact pulsars in general relativity
- Neutron star pulse profiles in scalar-tensor theories of gravity
- R-Modes on Rapidly Rotating, Relativistic Stars : II. Blackbody Emission
- The Energy Dependence of Neutron Star Surface Modes and X-ray Burst Oscillations
- Systematical study of pulsar light curves with special relativistic effects
- Light curves from highly compact neutron stars with spot size effect
- Pulse profiles from a pulsar in scalar-tensor gravity
- Accurate ray tracing of realistic neutron star atmospheres for constraining their parameters
- Testing the rotating hot spot model using X-ray burst oscillations from 4U 1636-536
- I-Love-Q to the extreme
- Neutron star pulse profile observations as extreme gravity probes
- Sensitivity of pulsar light curves to spacetime geometry and efficacy of analytic approximations
- A General Relativistic study of the neutrino path and calculation of minimum photosphere for different stars
- Observable form of pulses emitted from relativistic collapsing objects
- Electron-positron energy deposition rate from neutrino pair annihilation in the equatorial plane of rapidly rotating neutron and quark stars
- Light curves from rapidly rotating neutron stars
- Finite size effects on the light curves of slowly-rotating neutron stars
- Time and energy dependent characteristics of Thermonuclear burst oscillations
- Neutron stars as extreme gravity probes