Optical/infrared observations unveiling the formation, nature and evolution of High-Mass X-ray Binaries
arXiv:1403.0792 · doi:10.1016/j.asr.2013.09.010
Abstract
In this review I first describe the nature of the three kinds of High-Mass X-ray Binaries (HMXBs), accreting through: (i) Be circumstellar disc, (ii) supergiant stellar wind, and (iii) Roche lobe filling supergiants. I then report on the discovery of two new populations of HMXBs hosting supergiant stars, recently revealed by a wealth of new observations, coming from the high energy side (INTEGRAL, Swift, XMM, Chandra satellites), and complemented by multi-wavelength optical/infrared observations (mainly ESO facilities). The first population is constituted of obscured supergiant HMXBs, the second one of supergiant fast X-ray transients (SFXTs), exhibiting short and intense X-ray flares. I finally discuss the formation and evolution of HMXBs, constrain the accretion models (e.g. clumpy winds, transitory accretion disc, magneto-centrifugal barrier), show evidences suggesting the existence of an evolutionary link, include comparisons with population synthesis models, and finally build a consistent scenario explaining the various characteristics of these extreme celestial sources. Because they are the likely progenitors of Luminous Blue Variables (LBVs), and also of neutron star/black hole binary mergers, related to short/hard gamma-ray bursts, the knowledge of the nature, formation and evolution of these HMXB populations is of prime importance.
Invited review at the 2012 COSPAR Meeting, 11 pages, 6 figures
References in corpus (13)
- Catalogue of high-mass X-ray binaries in the Galaxy ( edition)
- A catalogue of low-mass X-ray binaries in the Galaxy, LMC, and SMC (Fourth edition)
- Neglecting the porosity of hot-star winds can lead to underestimating mass-loss rates
- Probing clumpy stellar winds with a neutron star
- Multi-wavelength observations of Galactic hard X-ray sources discovered by INTEGRAL. I. The nature of the companion star
- Multi-wavelength observations of Galactic hard X-ray sources discovered by INTEGRAL. II. The environment of the companion star
- An alternative hypothesis for the outburst mechanism in Supergiant Fast X-ray Transients: the case of IGR J11215-5952
- A description of sources detected by INTEGRAL during the first 4 years of observations
- Spectral distribution of Be/X-ray binaries in the Small Magellanic Cloud
- IGR J17544-2619: A new supergiant fast X-ray transient revealed by optical/infrared observations
- Distribution of High-Mass X-ray Binaries in the Milky Way
- IGR J18483-0311: an accreting X-ray pulsar observed by INTEGRAL
- IGR J18483-0311: a new intermediate supergiant fast X-ray transient
Cited by in corpus (15)
- Formation of Double Neutron Star Systems
- The ephemeris, orbital decay, and masses of 10 eclipsing HMXBs
- A catalogue of high-mass X-ray binaries in the Galaxy: from the INTEGRAL to the Gaia era
- Gaia pulsars and where to find them
- Supergiant fast X-ray transients as an under-luminous class of supergiant X-ray binaries
- Population III X-ray Binaries and their Impact on the Early Universe
- The donor star of the X-ray pulsar X1908+075
- An XMM-Newton and NuSTAR study of IGR J18214-1318: a non-pulsating high-mass X-ray binary with a neutron star
- Expected number of supergiant fast X-ray transients in the Milky Way
- Optical and infrared study of the obscured B[e] supergiant high-mass X-ray binary IGR J16318-4848
- Herschel observations of dust around the high-mass X-ray binary GX 301-2
- Effects of the core-collapse supernova ejecta impact on a rapidly rotating massive companion star
- Stellar wind structures in the eclipsing binary system IGR J18027-2016
- Classification of 3 accreting binaries with VLT/X-Shooter spectra
- Broad-band spectral energy distribution of the X-ray transient Swift J1745-26 from outburst to quiescence