Sensitivity of pulsar light curves to spacetime geometry and efficacy of analytic approximations
arXiv:1710.08581 · doi:10.1103/PhysRevD.96.104018
Abstract
In order to examine the pulse profile from a pulsar, we derive the formula for describing the flux from antipodal hot spots with any static, spherically symmetric spacetime. We find that the pulse profiles are almost independent of the gravitational geometry outside the star when the compactness of neutron stars is low enough, e.g., the stellar mass and radius are and 14 km, respectively. On the other hand, the pulse profiles depend strongly on the gravitational geometry when the compactness of neutron stars is so high, e.g., the stellar mass and radius are and 10 km, respectively. Thus, one may probe the spacetime geometry outside the star and even distinguish gravitational theories via the observation of pulse profile with the help of another observations for the stellar compactness, if the compactness of central object is high enough. We also derive the 1st and 2nd order approximation of the flux with respect to a parameter defined by the radio of the gravitational radius of considered spacetime to the stellar radius. Then, we find that the relative error from full order numerical results in the bending angle becomes with the 1st order and with the 2nd order approximations for a typical neutron star, whose mass and radius are and 12 km, respectively. Our results with the 1st order approximation for the Schwarzschild spacetime are different from those obtained in the literature, which suggests that the 1st order approximation has been misunderstood to yield highly accurate prediction.
accepted for publication in PRD
References in corpus (4)
- Pulse profiles of millisecond pulsars and their Fourier amplitudes
- Observational discrimination of Eddington-inspired Born-Infeld gravity from general relativity
- Stellar oscillations in Eddington-inspired Born-Infeld gravity
- Approximate analytical calculations of photon geodesics in the Schwarzschild metric
Cited by in corpus (4)
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- Neutral particle collisions near Gibbons-Maeda-Garfinkle-Horowitz-Strominger black holes after shadow observations
- Neutron stars as extreme gravity probes
- X-ray pulsed light curves of highly compact neutron stars as probes of scalar-tensor theories of gravity