arXiv Analytics

Sign in

arXiv:1811.02049 [astro-ph.HE]AbstractReferencesReviewsResources

Timing properties of ULX pulsars: optically thick envelopes and outflows

Alexander A. Mushtukov, Adam Ingram, Matthew Middleton, Dmitrij I. Nagirner, Michiel van der Klis

Published 2018-11-05Version 1

It has recently been discovered that a fraction of ultra-luminous X-ray sources (ULXs) exhibit X-ray pulsations, and are therefore powered by super-Eddington accretion onto magnetized neutron stars (NSs). For typical ULX mass accretion rates ($\gtrsim 10^{19}\,{\rm g\,s^{-1}}$), the inner parts of the accretion disc are expected to be in the supercritical regime, meaning that some material is lost in a wind launched from the disc surface, while the rest forms an optically thick envelope around the NS as it follows magnetic field lines from the inner disc radius to the magnetic poles of the star. The envelope hides the central object from a distant observer and defines key observational properties of ULX pulsars: their energy spectrum, polarization, and timing features. The optical thickness of the envelope is affected by the mass losses from the disc. We calculate the mass loss rate due to the wind in ULX pulsars, accounting for the NS magnetic field strength and advection processes in the disc. We argue that the detection of strong outflows from ULX pulsars can be considered evidence of a relatively weak dipole component of the NS magnetic field. We estimate the influence of mass losses on the optical thickness of the envelope and analyze how the envelope affects broadband aperiodic variability in ULXs. We show that brightness fluctuations at high Fourier frequencies can be strongly suppressed by multiple scatterings in the envelope and that the strength of suppression is determined by the mass accretion rate and geometrical size of the magnetosphere.

Comments: 12 pages, 11 figures, submitted to MNRAS
Categories: astro-ph.HE, astro-ph.GA
Related articles: Most relevant | Search more
arXiv:2308.10683 [astro-ph.HE] (Published 2023-08-21)
Variability, polarimetry, and timing properties of single pulses from PSR J2222-0137 using FAST
X. L. Miao et al.
arXiv:1504.08313 [astro-ph.HE] (Published 2015-04-30)
The remarkable timing properties of a `hypersoft' state in GRO J1655-40
arXiv:1705.01435 [astro-ph.HE] (Published 2017-05-03)
Mass loss through the L2 Lagrange point - Application to Main Sequence EMRI