Clumpy wind accretion in supergiant neutron star high mass X-ray binaries
arXiv:1603.05187 · doi:10.1051/0004-6361/201628341
Abstract
The accretion of the stellar wind material by a compact object represents the main mechanism powering the X-ray emission in classical supergiant high mass X-ray binaries and supergiant fast X-ray transients. In this work we present the first attempt to simulate the accretion process of a fast and dense massive star wind onto a neutron star, taking into account the effects of the centrifugal and magnetic inhibition of accretion ("gating") due to the spin and magnetic field of the compact object. We made use of a radiative hydrodynamical code to model the non-stationary radiatively driven wind of an O-B supergiant star and then place a neutron star characterized by a fixed magnetic field and spin period at a certain distance from the massive companion. Our calculations follow, as a function of time (on a total time scale of several hours), the transition of the system through all different accretion regimes that are triggered by the intrinsic variations in the density and velocity of the non-stationary wind. The X-ray luminosity released by the system is computed at each time step by taking into account the relevant physical processes occurring in the different accretion regimes. Synthetic lightcurves are derived and qualitatively compared with those observed from classical supergiant high mass X-ray binaries and supergiant fast X-ray transients. Although a number of simplifications are assumed in these calculations, we show that taking into account the effects of the centrifugal and magnetic inhibition of accretion significantly reduces the average X-ray luminosity expected for any neutron star wind-fed binary. The present model calculations suggest that long spin periods and stronger magnetic fields are favoured in order to reproduce the peculiar behavior of supergiant fast X-ray transients in the X-ray domain.
Accepted for publication on A&A. V2: corrected few typos
References in corpus (17)
- Mass loss from hot massive stars
- High-Mass X-ray Binaries in the Milky Way: A closer look with INTEGRAL
- Probing clumpy stellar winds with a neutron star
- High resolution X-ray spectroscopy of bright O type stars
- Monitoring Supergiant Fast X-ray Transients with Swift. I. Behavior outside outbursts
- Bright Flares in Supergiant Fast X-ray Transients
- Giant outburst from the supergiant fast X-ray transient IGR J17544-2619: accretion from a transient disc?
- Origin of the X-ray off-states in Vela X-1
- Monitoring Supergiant Fast X-ray Transients with Swift. Rise to the outburst in IGR J16479-4514
- X-ray irradiation of the winds in binaries with massive components
- Seven Years with the Swift Supergiant Fast X-ray Transients Project
- Two years of monitoring Supergiant Fast X-ray Transients with Swift
- Supergiant fast X-ray transients as an under-luminous class of supergiant X-ray binaries
- The first broad-band X-ray study of the Supergiant Fast X-ray Transient SAXJ1818.6-1703 in outburst
- Soft X-ray characterisation of the long term properties of Supergiant Fast X-ray Transients
- INTEGRAL study of temporal properties of bright flares in Supergiant Fast X-ray Transients
- Broadband Suzaku observations of IGR J16207-5129
Cited by in corpus (28)
- Formation of Double Neutron Star Systems
- The Ups & Downs of Accreting X-Ray Pulsars: Decade-long observations with the Fermi Gamma-Ray Burst Monitor
- Advances in Understanding High-Mass X-ray Binaries with INTEGRAL and Future Directions
- Accretion form a clumpy massive-star wind in Supergiant X-ray binaries
- Revisiting the archetypical wind accretor Vela X-1 in depth -- A case study of a well-known X-ray binary and the limits of our knowledge
- Nuclear timescale mass transfer in models of supergiant and ultra-luminous X-ray binaries
- High-Energy emissions from the Pulsar/Be binary system PSR J2032+4127/MT91 213
- Wind inhibition by X-ray irradiation in HMXBs: the influence of clumping and the final X-ray luminosity
- Constraining Compact Object Formation with 2M0521
- High-resolution X-ray spectroscopy of the stellar wind in Vela X-1 during a flare
- The accretion environment of Supergiant Fast X-ray Transients probed with XMM-Newton
- Multi-wavelength observations of IGR J17544-2619 from quiescence to outburst
- X-ray mapping of the stellar wind in the binary PSR J2032+4127/MT91 213
- On the apparent absence of WR+NS systems: the curious case of WR124
- XMM-Newton and Swift observations of supergiant high mass X-ray binaries
- On the super-orbital modulation of supergiant high mass X-ray binaries
- A semi-analytical treatment to wind accretion in neutron star supergiant high mass X-ray binaries: I. eccentric orbits
- Accretion of a clumped wind from a red supergiant donor onto a magnetar is suggested by the analysis of the XMM-Newton and NuSTAR observations of the X-ray binary 3A 1954+319
- Multitude of iron lines including a Compton scattered component in OAO 1657--415 detected with Chandra
- Chandra, MDM, Swift, and NuSTAR observations confirming the SFXT nature of AX J1949.8+2534
- Infrared outbursts as potential tracers of common envelope events in high-mass X-ray binary formation
- X-ray irradiation of the stellar wind in HMXBs with B supergiants: Implications for ULXs
- Probing the Stellar Wind of the Wolf-Rayet Star in IC 10 X-1
- Moving inhomogeneous envelopes of stars
- Searching for supergiant fast X-ray transients with Swift
- The XMM Newton and INTEGRAL observations of the supergiant fast X-ray transient IGR J16328-4726
- On the origin of super-global spin-up trends of X-ray pulsars in HMXB systems
- Low-frequency spectra of neutron star + OB supergiant binaries: Does wind density drive persistent and flaring modes of accretion?