On the radiation beaming of bright X-ray pulsars and constraints on neutron star mass-radius relation
arXiv:1707.09822 · doi:10.1093/mnras/stx2905
Abstract
The luminosity of accreting magnetised neutron stars can largely exceed the Eddington value due to appearance of accretion columns. The height of the columns can be comparable to the neutron star radius. The columns produce the X-rays detected by the observer directly and illuminate the stellar surface, which reprocesses the X-rays and causes additional component of the observed flux. The geometry of the column and the illuminated part of the surface determines the radiation beaming. Curved space-time affects the angular flux distribution. We construct a simple model of the beam patterns formed by direct and reflected flux from the column. We take into account the possibility of appearance of accretion columns, whose height is comparable to the neutron star radius. We argue that depending on the compactness of the star the flux from the column can be either strongly amplified due to gravitational lensing, or significantly reduced due to column eclipse by the star. The eclipses of high accretion columns result in specific features in pulse profiles. Their detection can put constraints on the neutron star radius. We speculate that column eclipses are observed in X-ray pulsar V 0332+53, leading us to the conclusion of large neutron star radius in this system ( if ). We point out that the beam pattern can be strongly affected by scattering in the accretion channel at high luminosity, which has to be taken into account in the models reproducing the pulse profiles.
13 pages, 17 figures, accepted for publication in MNRAS
References in corpus (12)
- Physics of Strongly Magnetized Neutron Stars
- An Ultraluminous X-ray Source Powered by An Accreting Neutron Star
- An accreting pulsar with extreme properties drives an ultraluminous x-ray source in NGC 5907
- Discovery of a 0.42-s pulsar in the ultraluminous X-ray source NGC 7793 P13
- The critical accretion luminosity for magnetized neutron stars
- Pulse profiles of millisecond pulsars and their Fourier amplitudes
- Optically thick envelopes around ULXs powered by accreating neutron stars
- Luminosity dependence of the cyclotron line and evidence for the accretion regime transition in V 0332+53
- On the dependence of the X-ray continuum variations with luminosity in accreting X-ray pulsars
- Transient X-ray pulsar V0332+53: pulse phase-resolved spectroscopy and the reflection model
- MHD instabilities in accretion mounds - 1: 2D axisymmetric simulations
- Constraining compactness and magnetic field geometry of X-ray pulsars from the statistics of their pulse profiles
Cited by in corpus (11)
- Pulsating ULXs: large pulsed fraction excludes strong beaming
- Broadband aperiodic variability in X-ray pulsars: accretion rate fluctuations propagating under the influence of viscous diffusion
- Large-scale outflow structure and radiation properties of super-Eddington flow: Dependence on the accretion rates
- On the Magnetic Fields, Beaming Fractions, and Fastness Parameters of Pulsating Ultra-Luminous X-Ray Sources
- Relation of cyclotron resonant energy and luminosity in a strongly magnetized neutron star GRO J1008-57 observed by Insight-HXMT
- Bright X-ray Pulsars: how outflows influence beaming, pulsations and pulse phase lags
- AstroSat observations of GRO J2058+42 during the 2019 outburst
- Comparing the Super-Eddington accretion of SMC X-3 and RX J0209.6-7427 with Swift J0243.6+6124
- Pulsating iron spectral features in the emission of X-ray pulsar V0332+53
- The long stare at Hercules X-1 -- I. Emission lines from the outer disk, the magnetosphere boundary and the accretion curtain
- Timing and spectral properties of Be/Xray pulsar 4U 1901+03 during 2019 outburst