On the nature of the hard X-ray source 4U2206+54
arXiv:astro-ph/0103520 · doi:10.1051/0004-6361:20010476
Abstract
The recent discovery of a ~9.5-d period in the X-ray lightcurve of the massive X-ray binary 4U2206+54 has opened the possibility that it is a Be/X-ray binary with an unusually close orbit, which, together with its low intrinsic luminosity, suggests that the system is actually a Be + WD binary, in which a white dwarf accretes material from the dense circumstellar disc surrounding a classical Be star. In this paper we present new X-ray observations and for the first time high-resolution optical spectroscopy of the source. We show that both the X-ray behaviour and the characteristics of the optical counterpart, BD +53 2790, are more consistent with a neutron star accreting from the wind of an early-type star. The X-ray lightcurve shows irregular flaring and no indications of pulsations, while the very high hydrogen column density supports accretion from a dense wind. BD +53 2790 is shown not to be a classical Be star, as believed until now, but rather a very peculiar late O-type active star, exhibiting emission components in the HeII lines, complex spectral variability and strong wind resonance lines in the ultraviolet. Though many of the characteristics of the spectrum resemble those of the He-rich stars, the absence of HeI variability makes a connection unlikely. The spectrum is compatible with a composite of two stars of similar spectral type, though circumstantial evidence points to a single very peculiar active early-type star. This adds weight to the growing evidence that the traditional subdivisions of supergiant and Be/X-ray binaries fail to cover the whole phenomenology of massive X-ray binaries.
10 pages, 7 figures, uses new aa.cls; accepted for publication in A&A
References in corpus (1)
Cited by in corpus (28)
- Jets in neutron star X-ray binaries: a comparison with black holes
- A Systematic Search for Periodicities in RXTE/ASM Data
- INTEGRAL survey of the Cassiopeia region in hard X rays
- Distribution of High-Mass X-ray Binaries in the Milky Way
- An INTEGRAL overview of High Mass X-ray Binaries: classes or transitions?
- Wind accretion in the massive X-ray binary 4U 2206+54: abnormally slow wind and a moderately eccentric orbit
- On the class of Oe stars
- The population of massive X-ray binaries I. The Large Magellanic Cloud
- Evidence for a Neutron Star in the non-pulsating massive X-ray binary 4U2206+54
- Accreting magnetars: a new type of high-mass X-ray binaries?
- Multiwavelength monitoring of BD+53 2790, the optical counterpart to 4U~2206+54
- Swift/BAT and RXTE Observations of the Peculiar X-ray Binary 4U 2206+54 - Disappearance of the 9.6 Day Modulation
- Discovery of slow X-ray pulsations in the high-mass X-ray binary 4U 2206+54
- Spin-Down of the Long-Period Accreting Pulsar 4U 2206+54
- The stellar and wind parameters of six prototypical HMXBs and their evolutionary status
- A look with BeppoSAX at the low-luminosity Galactic X-ray source 4U 2206+54
- Further evidence for the presence of a neutron star in 4U 2206+54. INTEGRAL and VLA observations
- Unveiling the Nature of the High Energy Source IGR J19140+0951
- Evidence for a magnetic neutron star in high mass X-ray binary 4U 2206+54 with INTEGRAL/IBIS observations
- 4U2206+54 - an Unusual High Mass X-ray Binary with a 9.6 Day Orbital Period but No Strong Pulsations
- An XMM-Newton Spectral and Timing Study of IGR J16207-5129: An Obscured and Non-Pulsating HMXB
- Orbital parameters of the high-mass X-ray binary 4U 2206+54
- Spin and Spectral Variations of Peculiar High-Mass X-ray Binary 4U 2206+54
- The VLT-FLAMES Tarantula survey XX. The nature of the X-ray bright emission line star VFTS 399
- INTEGRAL/IBIS observations of a hard X-ray outburst in high mass X-ray binary 4U 2206+54
- Very peculiar wind from BD+53 2790, the optical counterpart to 4U 2206+54
- Change in spin-down rate and detection of emission line in HMXB 4U 2206+54 with AstroSat observation
- Astrophysical parameters of LS 437 and the nature of X0726-260