On the super-orbital modulation of supergiant high mass X-ray binaries
arXiv:1710.01877 · doi:10.1051/0004-6361/201731930
Abstract
The long-term X-ray lightcurves of classical supergiant X-ray binaries and supergiant fast X-ray transients show relatively similar super-orbital modulations, which are still lacking a sound interpretation. We propose that these modulations are related to the presence of corotating interaction regions (CIRs) known to thread the winds of OB supergiants. To test this hypothesis, we couple the outcomes of 3-D hydrodynamic models for the formation of CIRs in stellar winds with a simplified recipe for the accretion onto a neutron star. The results show that the synthetic X-ray light curves are indeed modulated by the presence of the CIRs. The exact period and amplitude of these modulations depend on a number of parameters governing the hydrodynamic wind models and on the binary orbital configuration. To compare our model predictions with the observations, we apply the 3-D wind structure previously shown to well explain the appearance of discrete absorption components in the UV time series of a prototypical B0.5I-type supergiant. Using the orbital parameters of IGRJ16493-4348 which has the same B0.5I donor spectral type, the period and modulations in the simulated X-ray light-curve are similar to the observed ones, thus providing support to our scenario. We propose, that the presence of CIRs in donor star winds should be considered in future theoretical and simulation efforts of wind-fed X-ray binaries.
Accepted for publication on A&A
References in corpus (9)
- Mass loss from hot massive stars
- X-ray Spectral Study of the Photoionized Stellar Wind in Vela~X-1
- Towards a unified view of inhomogeneous stellar winds in isolated supergiant stars and supergiant high mass X-ray binaries
- Modeling Ultraviolet Wind Line Variability in Massive Hot Stars
- Giant outburst from the supergiant fast X-ray transient IGR J17544-2619: accretion from a transient disc?
- The X-ray binary 2S0114+650=LSI+65 010:A slow pulsar or tidally-induced pulsations?
- CIR Modulation of the X-ray Flux from the O7.5 III(n)((f)) Star xi Persei?
- Supergiant fast X-ray transients as an under-luminous class of supergiant X-ray binaries
- Evolution of Spin, Orbital, and Superorbital Modulations of 4U 0114+650
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- A Study of the 20 Day Superorbital Modulation in the High-Mass X-ray Binary IGR J16493-4348
- Superorbital Modulation in the High-Mass X-ray Binary 4U 1538-52, and Possible Modulation in IGR J16393-4643
- Investigating the superorbital modulations in 4U 1909+07, IGR J16418-4532 and IGR J16479-4514 with Swift XRT, BAT and NuSTAR observations
- Dust-scattering halo and giant hard X-ray flare from the Supergiant Fast X-ray Transient IGR J16479-4514 investigated with XMM-Newton and INTEGRAL
- Variability in high-mass X-ray binaries
- Swift/XRT monitoring of the orbital and superorbital modulations in 4U 1909+07